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These are important for accurate calculation of rates of initiation.\u003C\u002Fjats:p>",{"EN":42},"Kinetic constants for styrene polymerization",{"VOID":44},"[\"18396003103933270415\"]",{"VOID":46},"10.1002\u002Fpol.1955.120168220","PUBLICATION","VERIFIED","Auto Verify",[51],"EN","https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1002\u002Fpol.1955.120168220",[54,71],{"id":55,"sortIndex":20,"researcher":19,"roles":56,"affiliations":57,"properties":66},"debd67ef-97c1-4c70-ac0f-acacfc17da7d",[],[58],{"id":59,"sortIndex":20,"affiliation":60,"properties":19},"d01ac49a-51e1-45e1-9844-a971224af8fc",{"id":59,"createTime":19,"updateTime":19,"relativeEntities":61,"slug":19,"properties":62,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":65,"statistic":19},[],{"title":63},{"VI":64},"Frick Chemical Laboratory, Princeton University, Princeton, New Jersey",[],{"title":67,"openalex":69},{"EN":68},"A. 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Furoyl, phenyl, \u003Cjats:italic>p\u003C\u002Fjats:italic>‐chlorophenyl and \u003Cjats:italic>p\u003C\u002Fjats:italic>‐bromophenyl disulfides are neither promoters nor modifiers.\u003C\u002Fjats:p>",{"EN":138},"Aroyl disulfides as promoter‐modifiers for copolymerization of butadiene and styrene",{"VOID":140},"10.1002\u002Fpol.1948.120030108","2025-02-06T18:49:25.852+00:00",[51],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1002\u002Fpol.1948.120030108",[145,162,177],{"id":146,"sortIndex":20,"researcher":19,"roles":147,"affiliations":148,"properties":157},"007297d7-7fa3-4a62-839f-396fce660e3a",[],[149],{"id":150,"sortIndex":20,"affiliation":151,"properties":19},"fdc12fce-2e9c-49c5-95f9-d879ce357d44",{"id":150,"createTime":19,"updateTime":19,"relativeEntities":152,"slug":19,"properties":153,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":156,"statistic":19},[],{"title":154},{"EN":155},"Noyes Chemical Laboratory, University of Illinois, Urbana, Illinois",[],{"title":158,"openalex":160},{"EN":159},"Robert L. 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Pat. 519 730 (April 4 1940).",{},{"id":19,"text":221,"url":19,"identifiers":222},"10.1021\u002Fi560125a001",{"doi":221},{"id":19,"text":224,"url":19,"identifiers":225},"10.1021\u002Fja01212a007",{"doi":224},{"id":19,"text":227,"url":19,"identifiers":228},"10.1021\u002Fja01212a008",{"doi":227},{"id":19,"text":230,"url":19,"identifiers":231},"J. N.Street R. F.Dunbrook andR. L.Bebb Firestone Tire & Rubber Company Private communication.",{},{"id":19,"text":233,"url":19,"identifiers":234},"10.1002\u002Fcber.191104401125",{"doi":233},{"id":19,"text":236,"url":19,"identifiers":237},"10.1002\u002Fcber.18800130208",{"doi":236},{"id":19,"text":239,"url":19,"identifiers":240},"Whitmore F. C., 1941, Organic Syntheses, 492",{},{"id":19,"text":242,"url":19,"identifiers":243},"10.1002\u002Fcber.18850180129",{"doi":242},{"id":19,"text":245,"url":19,"identifiers":246},"Palmer C., 1882, Am. Chem. J., 4, 161",{},{"id":19,"text":248,"url":19,"identifiers":249},"de Jong H. L. 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A., 18, 1482",{},{"id":19,"text":254,"url":19,"identifiers":255},"10.1002\u002Fjps.3080250506",{"doi":254},{"id":19,"text":257,"url":19,"identifiers":258},"10.1002\u002Fpol.1946.120010413",{"doi":257},{"id":19,"text":260,"url":19,"identifiers":261},"10.1021\u002Fie50451a020",{"doi":260},{"id":19,"text":263,"url":19,"identifiers":264},"10.1021\u002Fja01252a021",{"doi":263},{"id":19,"text":266,"url":19,"identifiers":267},"10.1021\u002Fcr60068a006",{"doi":266},{"id":19,"text":269,"url":19,"identifiers":270},"10.1021\u002Fja01259a058",{"doi":269},{"id":19,"text":272,"url":19,"identifiers":273},"10.1021\u002Fja01226a018",{"doi":272},{"id":19,"text":275,"url":19,"identifiers":276},"10.1021\u002Fja01226a017",{"doi":275},{"id":278,"createTime":279,"updateTime":279,"relativeEntities":280,"slug":281,"properties":282,"entityType":47,"verifyStatus":48,"verifyTime":279,"verifyNote":49,"languages":293,"translateLanguages":19,"viewCount":20,"primaryUrl":294,"fullTextUrl":19,"authors":295,"publicationType":87,"publisherRelationship":330,"citationCount":347,"citationInfo":348,"publishDate":359,"publishYear":349,"citationAnalyzeStatus":18,"lastCitationAnalyze":19,"indexDatabases":360,"openAccess":19,"references":361,"isForceReanalyzing":124},"7cbe2a26-acca-44b8-b75b-039079d97bb8","2025-01-30T15:08:31.455+00:00",[],"Infrared-spectra-of-crystalline-polysaccharides-I-Hydrogen-bonds-in-native-celluloses",{"openalex":283,"mag":285,"abstract":287,"title":289,"doi":291},{"VOID":284},"W2061900750",{"VOID":286},"2061900750",{"EN":288},"\u003Cjats:title>Abstract\u003C\u002Fjats:title>\u003Cjats:p>The infrared spectra of oriented films of valonia cellulose and of ramie and bacterial cellulose crystallites have been observed in the 3 μ region. Polarization properties of the bands have also been determined. The differences between the polarized spectra of bacterial and ramie crystallites in this region are attributed to per cent crystallinity and orientation effects. Two new bands in the CH stretching region have been observed. With this new information the CH\u003Cjats:sub>2\u003C\u002Fjats:sub> symmetric and antlisymmetric stretching modes are assigned to parallel and perpendicular bands, respectively, requiring a specific orientation of the CH\u003Cjats:sub>2\u003C\u002Fjats:sub>OH group. From the observed polarization of the bands in the OH stretching region, a system of hydrogen bonding in the crystal structure of cellulose I is proposed. This involves a change in conformation of the cellobiose unit to permit an intramolecular hydrogen bond between the C\u003Cjats:sub>3\u003C\u002Fjats:sub> hydroxyl and the ring oxygen of contiguous glucose units. Two sets of intermolecular hydrogen bonds are proposed: in the 101 plane the C\u003Cjats:sub>6\u003C\u002Fjats:sub> hydroxyls of the antiparallel chains are joined to the bridge oxygens of the adjacent parallel chains; in the 101 plane the C\u003Cjats:sub>6\u003C\u002Fjats:sub> hydroxyls of the parallel chains are hydrogen‐bonded to the bridge oxygens of the adjacent antiparallel chains.\u003C\u002Fjats:p>",{"EN":290},"Infrared spectra of crystalline polysaccharides. I. Hydrogen bonds in native celluloses",{"VOID":292},"10.1002\u002Fpol.1959.1203713209",[51],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1002\u002Fpol.1959.1203713209",[296,315],{"id":297,"sortIndex":20,"researcher":19,"roles":298,"affiliations":299,"properties":308},"6ad85040-4beb-4ee8-bec6-5b6f087c79d7",[],[300],{"id":301,"sortIndex":20,"affiliation":302,"properties":19},"b3d949f1-f85f-445f-945b-b2059e7e9d74",{"id":301,"createTime":19,"updateTime":19,"relativeEntities":303,"slug":19,"properties":304,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":307,"statistic":19},[],{"title":305},{"EN":306},"Research and Development Division, American Viscose Corporation, Marcus Hook, Pennsylvania",[],{"orcid":309,"title":311,"openalex":313},{"VOID":310},"https:\u002F\u002Forcid.org\u002F0000-0003-0202-0438",{"EN":312},"Changhao Liang",{"VOID":314},"A5109174548",{"id":316,"sortIndex":73,"researcher":19,"roles":317,"affiliations":318,"properties":325},"3136ed04-7f0c-40f2-8be5-cd2520579acf",[],[319],{"id":301,"sortIndex":20,"affiliation":320,"properties":19},{"id":301,"createTime":19,"updateTime":19,"relativeEntities":321,"slug":19,"properties":322,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":324,"statistic":19},[],{"title":323},{"EN":306},[],{"title":326,"openalex":328},{"EN":327},"R. H. Marchessault",{"VOID":329},"A5011046749",{"url":19,"publisher":331,"properties":340},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":332,"slug":10,"properties":333,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":337,"manageAffiliations":338,"indexDatabases":339,"url":19,"thumbnailPath":19,"statistic":19,"gsStatistic":19,"type":19,"analyzePriority":19},[],{"issn":334,"title":335,"eissn":336},{"VOID":13},{"EN":10},{"VOID":16},[],[],[],{"issue":341,"pages":343,"volume":345},{"VOID":342},"132",{"VOID":344},"385-395",{"VOID":346},"37",412,{"total":347,"publishYear":349,"statisticByYear":350},1959,{"2012":351,"2013":352,"2014":353,"2015":354,"2016":355,"2017":354,"2018":354,"2019":356,"2020":210,"2021":357,"2022":354,"2023":358,"2024":210},15,10,12,14,13,8,19,16,"1959-06-01",[],[362,365,368,371,374,377,380,383,386,389,392,395,398,401,404,407,410,413,417,420,423,426,429,432,435,438,441],{"id":19,"text":363,"url":19,"identifiers":364},"10.1021\u002Fja01867a064",{"doi":363},{"id":19,"text":366,"url":19,"identifiers":367},"10.1177\u002F004051754701700905",{"doi":366},{"id":19,"text":369,"url":19,"identifiers":370},"10.6028\u002Fjres.044.028",{"doi":369},{"id":19,"text":372,"url":19,"identifiers":373},"10.6028\u002Fjres.046.006",{"doi":372},{"id":19,"text":375,"url":19,"identifiers":376},"10.1039\u002Fdf9500900222",{"doi":375},{"id":19,"text":378,"url":19,"identifiers":379},"10.1039\u002Fdf9500900251",{"doi":378},{"id":19,"text":381,"url":19,"identifiers":382},"10.1021\u002Fac60127a003",{"doi":381},{"id":19,"text":384,"url":19,"identifiers":385},"Konkin A. A., 1957, Faserforsch. u. Textiltech., 8, 85",{},{"id":19,"text":387,"url":19,"identifiers":388},"Brown L., J. Chem. Soc., 1951, 1532",{},{"id":19,"text":390,"url":19,"identifiers":391},"10.1002\u002Fjctb.5010040408",{"doi":390},{"id":19,"text":393,"url":19,"identifiers":394},"10.1039\u002Ftf9565200481",{"doi":393},{"id":19,"text":396,"url":19,"identifiers":397},"10.1002\u002Fpol.1956.120219812",{"doi":396},{"id":19,"text":399,"url":19,"identifiers":400},"10.1002\u002Fpol.1958.1202711561",{"doi":399},{"id":19,"text":402,"url":19,"identifiers":403},"10.1002\u002Fpol.1957.1202510904",{"doi":402},{"id":19,"text":405,"url":19,"identifiers":406},"R. H.MarchessaultandF. F.Morehead Paper presented at the 132nd National American Chemical Society Meeting New York 1957 to be published.",{},{"id":19,"text":408,"url":19,"identifiers":409},"10.1016\u002F0006-3002(53)90295-9",{"doi":408},{"id":19,"text":411,"url":19,"identifiers":412},"Howsmon J. A., 1954, Cellulose and Cellulose Deriwatives",{},{"id":19,"text":414,"url":19,"identifiers":415},"Bhagavantam S., 1939, Proc. Indian Acad. Sci., 9, 224, 10.1007\u002FBF03046465",{"doi":416},"10.1007\u002FBF03046465",{"id":19,"text":418,"url":19,"identifiers":419},"10.1063\u002F1.1742962",{"doi":418},{"id":19,"text":421,"url":19,"identifiers":422},"10.1016\u002F0022-2852(57)90010-3",{"doi":421},{"id":19,"text":424,"url":19,"identifiers":425},"10.1098\u002Frspa.1940.0053",{"doi":424},{"id":19,"text":427,"url":19,"identifiers":428},"10.1016\u002F0006-3002(55)90039-1",{"doi":427},{"id":19,"text":430,"url":19,"identifiers":431},"Hermans P. H., 1949, Physics and Chemistry of Cellulose Fibers, 13",{},{"id":19,"text":433,"url":19,"identifiers":434},"Petitpas T., 1956, Compt. rend., 243, 47",{},{"id":19,"text":436,"url":19,"identifiers":437},"10.1083\u002Fjcb.3.5.669",{"doi":436},{"id":19,"text":439,"url":19,"identifiers":440},"10.1038\u002F181326a0",{"doi":439},{"id":19,"text":442,"url":19,"identifiers":443},"H. W.Wyckoff American Viscose Corporation Marcus Hook Pa. private communication.",{},{"id":445,"createTime":446,"updateTime":446,"relativeEntities":447,"slug":448,"properties":449,"entityType":47,"verifyStatus":48,"verifyTime":446,"verifyNote":49,"languages":460,"translateLanguages":19,"viewCount":20,"primaryUrl":461,"fullTextUrl":19,"authors":462,"publicationType":87,"publisherRelationship":520,"citationCount":537,"citationInfo":538,"publishDate":545,"publishYear":539,"citationAnalyzeStatus":18,"lastCitationAnalyze":19,"indexDatabases":546,"openAccess":19,"references":547,"isForceReanalyzing":124},"371f4caf-10a9-43e8-a43b-f2b938f4bfcd","2024-12-31T17:16:57.672+00:00",[],"Dissociation-of-weak-polymeric-acids-and-bases",{"openalex":450,"mag":452,"abstract":454,"title":456,"doi":458},{"VOID":451},"W2011643715",{"VOID":453},"2011643715",{"EN":455},"\u003Cjats:title>Abstract\u003C\u002Fjats:title>\u003Cjats:p>The electrolytic dissociation of several polymeric acids and bases in aqueous solutions has been investigated. The potentiometric behavior is well described by the following equations, For polyacids:\n\u003Cjats:disp-formula>\n\n\u003C\u002Fjats:disp-formula>\nand for polybases:\n\u003Cjats:disp-formula>\n\n\u003C\u002Fjats:disp-formula>\n\u003Cjats:italic>pK\u003C\u002Fjats:italic>\u003Cjats:sub>0\u003C\u002Fjats:sub> is the intrinsic dissociation constant of the monomeric unit, α and β are the degrees of ionization of the polyacid and the polybase respectively, ψ\u003Cjats:sub>0\u003C\u002Fjats:sub> is the electrostatic surface potential of the polyion. It is shown that ψ\u003Cjats:sub>0\u003C\u002Fjats:sub> is equal to (1\u002Fϵ) (δ\u003Cjats:italic>F\u003C\u002Fjats:italic>\u003Cjats:sub>\u003Cjats:italic>e\u003C\u002Fjats:italic>\u003C\u002Fjats:sub>\u002Fδ\u003Cjats:italic>v\u003C\u002Fjats:italic>) for polyacids and (1\u002Fϵ) (δ\u003Cjats:italic>F\u003C\u002Fjats:italic>\u003Cjats:sub>\u003Cjats:italic>e\u003C\u002Fjats:italic>\u003C\u002Fjats:sub>\u002Fδζ) for polybases where \u003Cjats:italic>F\u003C\u002Fjats:italic>\u003Cjats:sub>\u003Cjats:italic>e\u003C\u002Fjats:italic>\u003C\u002Fjats:sub> is the electrostatic energy of the polyion and \u003Cjats:italic>v\u003C\u002Fjats:italic> or ζ the number of negative or positive ionized groups respectively. Equations for the calcualtion of ψ\u003Cjats:sub>0\u003C\u002Fjats:sub> in the cases of randamly kinked and stretched polyelectrolytes are given and discussed. As the potential ψ\u003Cjats:sub>0\u003C\u002Fjats:sub> can be obtained independently from electrophoretic measurements, the above equations correlate potentiometry and electrophoresis. The potentials of polymethacrylate ions were calculated from theory and obtained from electrophoretic and potentiometric measurements. The potentials obtained by the three methods agree within 3% thus justifying the use of the combined potentiometric and electrophoretic measurements for the evaluation of \u003Cjats:italic>pK\u003C\u002Fjats:italic>\u003Cjats:sub>0\u003C\u002Fjats:sub>. Application of this method to the potentiometric analysis of pectic acids gave good agreement with experiment and lead to \u003Cjats:italic>pK\u003C\u002Fjats:italic>\u003Cjats:sub>0\u003C\u002Fjats:sub> = 3.40. Combined potentiometric‐electrophoretic analysis for polyaspartic acid gave \u003Cjats:italic>pK\u003C\u002Fjats:italic>\u003Cjats:sub>0\u003C\u002Fjats:sub> = 3.53 and for polylsine \u003Cjats:italic>pK\u003C\u002Fjats:italic>\u003Cjats:sub>0\u003C\u002Fjats:sub> = 10.44.\u003C\u002Fjats:p>",{"EN":457},"Dissociation of weak polymeric acids and bases",{"VOID":459},"10.1002\u002Fpol.1954.120136806",[51],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1002\u002Fpol.1954.120136806",[463,480,503],{"id":464,"sortIndex":20,"researcher":19,"roles":465,"affiliations":466,"properties":475},"b8274a27-8590-487c-8989-f84a87091b1d",[],[467],{"id":468,"sortIndex":20,"affiliation":469,"properties":19},"96cef980-d618-4067-9a32-619ed935a44e",{"id":468,"createTime":19,"updateTime":19,"relativeEntities":470,"slug":19,"properties":471,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":474,"statistic":19},[],{"title":472},{"VI":473},"The Weizmann Institute of Science, Rehovot, Israel",[],{"title":476,"openalex":478},{"EN":477},"A. Katchalsky",{"VOID":479},"A5113540829",{"id":481,"sortIndex":73,"researcher":19,"roles":482,"affiliations":483,"properties":498},"95f96498-3a3b-4268-b376-29f88ee984d2",[],[484,492],{"id":485,"sortIndex":20,"affiliation":486,"properties":19},"1ecc4c59-13c0-4453-9ff5-9c720d9046a4",{"id":485,"createTime":19,"updateTime":19,"relativeEntities":487,"slug":19,"properties":488,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":491,"statistic":19},[],{"title":489},{"EN":490},"Part of a thesis submitted by N. Shavit (Sternberg) to the Hebrew University, Jerusalem, in partial fulfillment of the requirements for the degree of Doctor of Philosophy.",[],{"id":468,"sortIndex":73,"affiliation":493,"properties":19},{"id":468,"createTime":19,"updateTime":19,"relativeEntities":494,"slug":19,"properties":495,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":497,"statistic":19},[],{"title":496},{"VI":473},[],{"title":499,"openalex":501},{"EN":500},"Nehemia Shavit",{"VOID":502},"A5046054460",{"id":504,"sortIndex":179,"researcher":19,"roles":505,"affiliations":506,"properties":513},"24764a75-9070-446d-b6ad-5b475d0fd2da",[],[507],{"id":468,"sortIndex":20,"affiliation":508,"properties":19},{"id":468,"createTime":19,"updateTime":19,"relativeEntities":509,"slug":19,"properties":510,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":512,"statistic":19},[],{"title":511},{"VI":473},[],{"orcid":514,"title":516,"openalex":518},{"VOID":515},"https:\u002F\u002Forcid.org\u002F0000-0002-5953-351X",{"EN":517},"H. S. Eisenberg",{"VOID":519},"A5036922345",{"url":19,"publisher":521,"properties":530},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":522,"slug":10,"properties":523,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":527,"manageAffiliations":528,"indexDatabases":529,"url":19,"thumbnailPath":19,"statistic":19,"gsStatistic":19,"type":19,"analyzePriority":19},[],{"issn":524,"title":525,"eissn":526},{"VOID":13},{"EN":10},{"VOID":16},[],[],[],{"issue":531,"pages":533,"volume":535},{"VOID":532},"68",{"VOID":534},"69-84",{"VOID":536},"13",246,{"total":537,"publishYear":539,"statisticByYear":540},1954,{"2012":541,"2013":541,"2014":541,"2015":179,"2016":542,"2017":541,"2018":543,"2019":541,"2020":543,"2022":541,"2023":544,"2024":73},4,6,3,7,"1954-02-01",[],[548,551,554,557,560,563,566,569,572,575,578,581,584,587,590,593,596,599,602,605,608,611,614,617,620,623,626,629,632,635,638,641,644],{"id":19,"text":549,"url":19,"identifiers":550},"10.1111\u002Fj.1749-6632.1941.tb35241.x",{"doi":549},{"id":19,"text":552,"url":19,"identifiers":553},"10.1021\u002Fj150442a006",{"doi":552},{"id":19,"text":555,"url":19,"identifiers":556},"Mathews M. B., 1952, Federation Proc., 11, 255",{},{"id":19,"text":558,"url":19,"identifiers":559},"10.1002\u002Frecl.19520710513",{"doi":558},{"id":19,"text":561,"url":19,"identifiers":562},"Kern W., 1938, Z. physik. Chem., 181, 249",{},{"id":19,"text":564,"url":19,"identifiers":565},"10.1002\u002Fpol.1947.120020409",{"doi":564},{"id":19,"text":567,"url":19,"identifiers":568},"10.1002\u002Fpol.1951.120070108",{"doi":567},{"id":19,"text":570,"url":19,"identifiers":571},"10.1002\u002Frecl.19490680912",{"doi":570},{"id":19,"text":573,"url":19,"identifiers":574},"10.1002\u002Frecl.19500690205",{"doi":573},{"id":19,"text":576,"url":19,"identifiers":577},"Katchalsky A., 1952, Bull. Research Council Israel, 2",{},{"id":19,"text":579,"url":19,"identifiers":580},"10.1002\u002Frecl.19480671002",{"doi":579},{"id":19,"text":582,"url":19,"identifiers":583},"10.1002\u002Fhlca.19480310716",{"doi":582},{"id":19,"text":585,"url":19,"identifiers":586},"10.1073\u002Fpnas.37.9.579",{"doi":585},{"id":19,"text":588,"url":19,"identifiers":589},"10.1021\u002Fj150493a012",{"doi":588},{"id":19,"text":591,"url":19,"identifiers":592},"10.1002\u002Fpol.1951.120070509",{"doi":591},{"id":19,"text":594,"url":19,"identifiers":595},"10.1002\u002Fpol.1954.120136804",{"doi":594},{"id":19,"text":597,"url":19,"identifiers":598},"10.1002\u002Fpol.1954.120136805",{"doi":597},{"id":19,"text":600,"url":19,"identifiers":601},"E.KatchalskiandM.Sela J. Am. Chem. Soc. in press.",{},{"id":19,"text":603,"url":19,"identifiers":604},"10.1021\u002Fj150493a010",{"doi":603},{"id":19,"text":606,"url":19,"identifiers":607},"10.1002\u002Fhlca.19430260514",{"doi":606},{"id":19,"text":609,"url":19,"identifiers":610},"S.Säverborn “A Contribution to the Knowledge of the Acid Polyuronides ”Dissertation Uppsala 1945.",{},{"id":19,"text":612,"url":19,"identifiers":613},"10.1039\u002Ftf9403500101",{"doi":612},{"id":19,"text":615,"url":19,"identifiers":616},"10.1098\u002Frspa.1931.0133",{"doi":615},{"id":19,"text":618,"url":19,"identifiers":619},"10.1021\u002Fcr60078a010",{"doi":618},{"id":19,"text":621,"url":19,"identifiers":622},"Overbeek J. Th. G., 1950, Advances in Colloid Science",{},{"id":19,"text":624,"url":19,"identifiers":625},"10.1038\u002F161083a0",{"doi":624},{"id":19,"text":627,"url":19,"identifiers":628},"10.1098\u002Frspa.1950.0154",{"doi":627},{"id":19,"text":630,"url":19,"identifiers":631},"10.1002\u002Fpol.1951.120070403",{"doi":630},{"id":19,"text":633,"url":19,"identifiers":634},"Abramson H. A., 1942, Electrophoresis of Proteins",{},{"id":19,"text":636,"url":19,"identifiers":637},"H. S.Owens private communication.",{},{"id":19,"text":639,"url":19,"identifiers":640},"10.1021\u002Fja01153a009",{"doi":639},{"id":19,"text":642,"url":19,"identifiers":643},"10.1021\u002Fja01186a032",{"doi":642},{"id":19,"text":645,"url":19,"identifiers":646},"10.1021\u002Fi560152a002",{"doi":645},{"id":648,"createTime":649,"updateTime":649,"relativeEntities":650,"slug":651,"properties":652,"entityType":47,"verifyStatus":48,"verifyTime":649,"verifyNote":49,"languages":663,"translateLanguages":19,"viewCount":20,"primaryUrl":664,"fullTextUrl":19,"authors":665,"publicationType":87,"publisherRelationship":713,"citationCount":353,"citationInfo":730,"publishDate":733,"publishYear":731,"citationAnalyzeStatus":18,"lastCitationAnalyze":19,"indexDatabases":734,"openAccess":19,"references":735,"isForceReanalyzing":124},"b3ae8ab7-7aa8-40df-98a8-50368a5c832d","2024-12-28T04:31:27.713+00:00",[],"Dynamic-mechanical-measurement-of-M-sub-i-n-i-sub-",{"openalex":653,"mag":655,"abstract":657,"title":659,"doi":661},{"VOID":654},"W2099436146",{"VOID":656},"2099436146",{"EN":658},"\u003Cjats:title>Abstract\u003C\u002Fjats:title>\u003Cjats:p>A procedure is described for the measurement of number‐average molecular weight M̄\u003Cjats:sub>\u003Cjats:italic>n\u003C\u002Fjats:italic>\u003C\u002Fjats:sub> on a specimen in bulk form, utilizing a dynamic torsion pendulum. For both atactic and isotactic polystyrenes it has been found that the minimum value of the damping logarithmic decrement, δ\u003Cjats:sub>\u003Cjats:italic>m\u003C\u002Fjats:italic>\u003C\u002Fjats:sub>, (above the glass temperature) is related to an measured osmometrically in dilute solution by M̄\u003Cjats:sub>\u003Cjats:italic>n\u003C\u002Fjats:italic>\u003C\u002Fjats:sub> = δ\u003Cjats:inline-graphic xmlns:xlink=\"http:\u002F\u002Fwww.w3.org\u002F1999\u002Fxlink\" xlink:href=\"graphic\u002Ftex2gif-stack-1.gif\" xlink:title=\"urn:x-wiley:00223832:media:POL1204414313:tex2gif-stack-1\"\u002F> × 10\u003Cjats:sup>5\u003C\u002Fjats:sup>. The M̄\u003Cjats:sub>\u003Cjats:italic>v\u003C\u002Fjats:italic>\u003C\u002Fjats:sub>\u002FM̄\u003Cjats:sub>\u003Cjats:italic>n\u003C\u002Fjats:italic>\u003C\u002Fjats:sub> ratio can also be estimated directly from the δ vs. temperature curve. A four‐element spring‐and‐dashpot model yields similar 6 vs. \u003Cjats:italic>T\u003C\u002Fjats:italic> curves when the Williams‐Landel‐Ferry temperataure dependence is assigned to the viscosity of the dashpots.\u003C\u002Fjats:p>",{"EN":660},"Dynamic mechanical measurement of M̄\u003Csub>\u003Ci>n\u003C\u002Fi>\u003C\u002Fsub>",{"VOID":662},"10.1002\u002Fpol.1960.1204414313",[51],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1002\u002Fpol.1960.1204414313",[666,683,698],{"id":667,"sortIndex":20,"researcher":19,"roles":668,"affiliations":669,"properties":678},"3a436ceb-90ac-4877-84f9-b5d2d2770c05",[],[670],{"id":671,"sortIndex":20,"affiliation":672,"properties":19},"ecaf3555-7291-4358-80df-4441b24d9ce6",{"id":671,"createTime":19,"updateTime":19,"relativeEntities":673,"slug":19,"properties":674,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":677,"statistic":19},[],{"title":675},{"EN":676},"Monsanto Chemical Company, Plastics Division, Springfield, Massachusetts",[],{"title":679,"openalex":681},{"EN":680},"W. P. Cox",{"VOID":682},"A5110250519",{"id":684,"sortIndex":73,"researcher":19,"roles":685,"affiliations":686,"properties":693},"e632985e-be04-41b8-9cab-ba5dda211342",[],[687],{"id":671,"sortIndex":20,"affiliation":688,"properties":19},{"id":671,"createTime":19,"updateTime":19,"relativeEntities":689,"slug":19,"properties":690,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":692,"statistic":19},[],{"title":691},{"EN":676},[],{"title":694,"openalex":696},{"EN":695},"R. A. Isaksen",{"VOID":697},"A5009861267",{"id":699,"sortIndex":179,"researcher":19,"roles":700,"affiliations":701,"properties":708},"377330c2-709a-4cc8-b49f-266d34b34991",[],[702],{"id":671,"sortIndex":20,"affiliation":703,"properties":19},{"id":671,"createTime":19,"updateTime":19,"relativeEntities":704,"slug":19,"properties":705,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":707,"statistic":19},[],{"title":706},{"EN":676},[],{"title":709,"openalex":711},{"EN":710},"E. H. Merz",{"VOID":712},"A5066972977",{"url":19,"publisher":714,"properties":723},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":715,"slug":10,"properties":716,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":720,"manageAffiliations":721,"indexDatabases":722,"url":19,"thumbnailPath":19,"statistic":19,"gsStatistic":19,"type":19,"analyzePriority":19},[],{"issn":717,"title":718,"eissn":719},{"VOID":13},{"EN":10},{"VOID":16},[],[],[],{"issue":724,"pages":726,"volume":728},{"VOID":725},"143",{"VOID":727},"149-154",{"VOID":729},"44",{"total":353,"publishYear":731,"statisticByYear":732},1960,{},"1960-05-01",[],[736,739,742,745,748,751,754,757,760],{"id":19,"text":737,"url":19,"identifiers":738},"Bonner R. V., 1958, Number‐Average Molecular Weights",{},{"id":19,"text":740,"url":19,"identifiers":741},"10.1021\u002Fie50498a036",{"doi":740},{"id":19,"text":743,"url":19,"identifiers":744},"10.1063\u002F1.1746037",{"doi":743},{"id":19,"text":746,"url":19,"identifiers":747},"10.1002\u002Fpol.1950.120050506",{"doi":746},{"id":19,"text":749,"url":19,"identifiers":750},"10.1002\u002Fpol.1955.120178301",{"doi":749},{"id":19,"text":752,"url":19,"identifiers":753},"10.1016\u002F0095-8522(59)90068-6",{"doi":752},{"id":19,"text":755,"url":19,"identifiers":756},"Staverman A. J., 1956, Die Physik Hochpolymeren",{},{"id":19,"text":758,"url":19,"identifiers":759},"10.1021\u002Fja01619a008",{"doi":758},{"id":19,"text":761,"url":19,"identifiers":762},"10.1002\u002Fpol.1954.120147514",{"doi":761},{"id":764,"createTime":765,"updateTime":765,"relativeEntities":766,"slug":767,"properties":768,"entityType":47,"verifyStatus":48,"verifyTime":765,"verifyNote":49,"languages":779,"translateLanguages":19,"viewCount":20,"primaryUrl":780,"fullTextUrl":19,"authors":781,"publicationType":87,"publisherRelationship":799,"citationCount":816,"citationInfo":817,"publishDate":822,"publishYear":818,"citationAnalyzeStatus":18,"lastCitationAnalyze":19,"indexDatabases":823,"openAccess":19,"references":824,"isForceReanalyzing":124},"4a1125f1-2cdd-4b96-aa36-4c49743f399a","2024-12-26T15:03:12.877+00:00",[],"Glass-transition-temperatures-of-copolymers",{"openalex":769,"mag":771,"abstract":773,"title":775,"doi":777},{"VOID":770},"W2100103515",{"VOID":772},"2100103515",{"EN":774},"\u003Cjats:title>Abstract\u003C\u002Fjats:title>\u003Cjats:p>The Gordon‐Taylor equation relating the glass transition temperature θ of a copolymer to the glass transition temperatures θ\u003Cjats:sub>1\u003C\u002Fjats:sub> and θ\u003Cjats:sub>2\u003C\u002Fjats:sub> of the homopolymers is equivalent to\n\u003Cjats:disp-formula>\n\n\u003C\u002Fjats:disp-formula>\nwhere \u003Cjats:italic>c\u003C\u002Fjats:italic>\u003Cjats:sub>1\u003C\u002Fjats:sub> and \u003Cjats:italic>c\u003C\u002Fjats:italic>\u003Cjats:sub>2\u003C\u002Fjats:sub> are the weight fractions of the constituents and \u003Cjats:italic>A\u003C\u002Fjats:italic>\u003Cjats:sub>1\u003C\u002Fjats:sub> and \u003Cjats:italic>A\u003C\u002Fjats:italic>\u003Cjats:sub>2\u003C\u002Fjats:sub> are constants. It can be recast into the following forms suitable for linear plots\n\u003Cjats:disp-formula>\n\n\u003C\u002Fjats:disp-formula>\nand\n\u003Cjats:disp-formula>\n\n\u003C\u002Fjats:disp-formula>\nwhere \u003Cjats:italic>k\u003C\u002Fjats:italic> = \u003Cjats:italic>A\u003C\u002Fjats:italic>\u003Cjats:sub>2\u003C\u002Fjats:sub>\u002F\u003Cjats:italic>A\u003C\u002Fjats:italic>\u003Cjats:sub>1\u003C\u002Fjats:sub>. Data from the literature on 10 copolymer systems, including butaciene‐styrene copolymers, give linear plots, verifying the equation within experimental error. However, the observed value of \u003Cjats:italic>k\u003C\u002Fjats:italic> is in most cases significantly smaller than the ratio of the differences of the volume‐temperature coefficients for each homopolymer in the rubbery and glassy states, as required by the derivation of Gordon and Taylor. The glass transition temperature (in °C.) for a butadiene‐styrene copolymer prepared by emulsion polymerization at 50°C. may be calculated from the weight fraction \u003Cjats:italic>c\u003C\u002Fjats:italic>\u003Cjats:sub>2\u003C\u002Fjats:sub> of bound styrene as\n\u003Cjats:disp-formula>\n\n\u003C\u002Fjats:disp-formula>\nand for a similar 5° copolymer as\n\u003Cjats:disp-formula>\n\n\u003C\u002Fjats:disp-formula>\u003C\u002Fjats:p>",{"EN":776},"Glass transition temperatures of copolymers",{"VOID":778},"10.1002\u002Fpol.1958.1202811707",[51],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1002\u002Fpol.1958.1202811707",[782],{"id":783,"sortIndex":20,"researcher":19,"roles":784,"affiliations":785,"properties":794},"9f2d8803-c70c-4201-ba42-46f32b1b26b1",[],[786],{"id":787,"sortIndex":20,"affiliation":788,"properties":19},"6cb1d656-d983-4c55-8d4b-f9b45e2eabca",{"id":787,"createTime":19,"updateTime":19,"relativeEntities":789,"slug":19,"properties":790,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":793,"statistic":19},[],{"title":791},{"VI":792},"National Bureau of Standards, Washington 25, D.C.",[],{"title":795,"openalex":797},{"EN":796},"Lawrence A. Wood",{"VOID":798},"A5059688111",{"url":19,"publisher":800,"properties":809},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":801,"slug":10,"properties":802,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":806,"manageAffiliations":807,"indexDatabases":808,"url":19,"thumbnailPath":19,"statistic":19,"gsStatistic":19,"type":19,"analyzePriority":19},[],{"issn":803,"title":804,"eissn":805},{"VOID":13},{"EN":10},{"VOID":16},[],[],[],{"issue":810,"pages":812,"volume":814},{"VOID":811},"117",{"VOID":813},"319-330",{"VOID":815},"28",456,{"total":816,"publishYear":818,"statisticByYear":819},1958,{"2012":210,"2013":820,"2014":821,"2015":821,"2016":544,"2017":356,"2018":356,"2019":543,"2020":542,"2021":543,"2022":544,"2023":210,"2024":179},11,5,"1958-03-01",[],[825,828,831,834,837,840,843,845,848,851,854,857,860,863,866,869,872,875,878,881,884,887,890,893,896,899,902,905],{"id":19,"text":826,"url":19,"identifiers":827},"10.1063\u002F1.1707444",{"doi":826},{"id":19,"text":829,"url":19,"identifiers":830},"10.1002\u002Fjctb.5010020901",{"doi":829},{"id":19,"text":832,"url":19,"identifiers":833},"10.5254\u002F1.3539818",{"doi":832},{"id":19,"text":835,"url":19,"identifiers":836},"10.6028\u002Fjres.058.019",{"doi":835},{"id":19,"text":838,"url":19,"identifiers":839},"Fox T. G., 1956, Bull. Am. Phys. Soc., 1, 123",{},{"id":19,"text":841,"url":19,"identifiers":842},"10.1063\u002F1.1699711",{"doi":841},{"id":19,"text":758,"url":19,"identifiers":844},{"doi":758},{"id":19,"text":846,"url":19,"identifiers":847},"10.6028\u002Fjres.055.012",{"doi":846},{"id":19,"text":849,"url":19,"identifiers":850},"Wood L. A., 1954, Synthetic Rubber",{},{"id":19,"text":852,"url":19,"identifiers":853},"S.Loshaek unpublished data furnished by the courtesy ofT. G.Fox.",{},{"id":19,"text":855,"url":19,"identifiers":856},"10.1007\u002FBF01519799",{"doi":855},{"id":19,"text":858,"url":19,"identifiers":859},"1955, Kunststoffe, 45, 3",{},{"id":19,"text":861,"url":19,"identifiers":862},"10.1021\u002Fie50494a021",{"doi":861},{"id":19,"text":864,"url":19,"identifiers":865},"10.5254\u002F1.3543098",{"doi":864},{"id":19,"text":867,"url":19,"identifiers":868},"10.1063\u002F1.1721820",{"doi":867},{"id":19,"text":870,"url":19,"identifiers":871},"10.6028\u002Fjres.044.032",{"doi":870},{"id":19,"text":873,"url":19,"identifiers":874},"10.5254\u002F1.3543067",{"doi":873},{"id":19,"text":876,"url":19,"identifiers":877},"10.1002\u002Fpol.1956.120199108",{"doi":876},{"id":19,"text":879,"url":19,"identifiers":880},"10.6028\u002Fjres.013.029",{"doi":879},{"id":19,"text":882,"url":19,"identifiers":883},"10.5254\u002F1.3548287",{"doi":882},{"id":19,"text":885,"url":19,"identifiers":886},"10.1002\u002Fpol.1955.120158007",{"doi":885},{"id":19,"text":888,"url":19,"identifiers":889},"10.1021\u002Fj150553a033",{"doi":888},{"id":19,"text":891,"url":19,"identifiers":892},"10.1002\u002Fpol.1949.120040310",{"doi":891},{"id":19,"text":894,"url":19,"identifiers":895},"I.Madorsky National Bureau of Standards unpublished results.",{},{"id":19,"text":897,"url":19,"identifiers":898},"10.1002\u002Fpol.1955.120158006",{"doi":897},{"id":19,"text":900,"url":19,"identifiers":901},"10.1002\u002Fpol.1956.1202210219",{"doi":900},{"id":19,"text":903,"url":19,"identifiers":904},"10.1002\u002Fpol.1954.120136908",{"doi":903},{"id":19,"text":906,"url":19,"identifiers":907},"Jenckel E., 1941, Z. physik. Chem. (Leipzig, 190, 24",{},{"id":909,"createTime":910,"updateTime":910,"relativeEntities":911,"slug":912,"properties":913,"entityType":47,"verifyStatus":48,"verifyTime":924,"verifyNote":49,"languages":925,"translateLanguages":19,"viewCount":20,"primaryUrl":926,"fullTextUrl":19,"authors":927,"publicationType":87,"publisherRelationship":990,"citationCount":1007,"citationInfo":1008,"publishDate":1011,"publishYear":1009,"citationAnalyzeStatus":18,"lastCitationAnalyze":19,"indexDatabases":1012,"openAccess":19,"references":1013,"isForceReanalyzing":124},"3f540e56-2fdd-4b22-9c1b-7436da364c32","2024-12-26T02:19:15.167+00:00",[],"The-molecular-structure-of-polyethylene-XI-Weight-and-number-average-molecular-weights-of-selected-samples",{"openalex":914,"mag":916,"abstract":918,"title":920,"doi":922},{"VOID":915},"W1995933952",{"VOID":917},"1995933952",{"EN":919},"\u003Cjats:title>Abstract\u003C\u002Fjats:title>\u003Cjats:p>Improved methods for measuring weight‐ and number‐average molecular weight of polymers soluble only at elevated temperatures are applied to selcted samples of polyethylene. For two samples of essentially linear polyethylene, number‐average molecular weights by cryoscopy are 11,500 and 13,000, and weight‐average molecular weights by light scattering are 144,000 and 175,000. For samples of branched Fawcett‐type polyethylene, number‐average molecular weights are in the range 10,000–19,000 and weight‐average molecular weights are between 300,000 and 700,000. For one sample each of branched and essentially linear polyethylene it is demonstrated that light scattering measurement in three solvents gives the same molecular weight: no evidence is found for the “association” of these samples of polyethylene in thermodynamically poor solvents. It is thus demonstrated that association is not observed for all samples of polyethylene in dilute solution in α‐chloronaphthalene.\u003C\u002Fjats:p>",{"EN":921},"The molecular structure of polyethylene. XI. Weight‐ and number‐average molecular weights of selected samples",{"VOID":923},"10.1002\u002Fpol.1962.1206217319","2024-12-26T02:19:15.166+00:00",[51],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1002\u002Fpol.1962.1206217319",[928,945,960,975],{"id":929,"sortIndex":20,"researcher":19,"roles":930,"affiliations":931,"properties":940},"ca04432a-ae31-4c59-b9f9-ee50d922575a",[],[932],{"id":933,"sortIndex":20,"affiliation":934,"properties":19},"8200dd59-e8a7-48ab-95a8-50a2438f5e09",{"id":933,"createTime":19,"updateTime":19,"relativeEntities":935,"slug":19,"properties":936,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":939,"statistic":19},[],{"title":937},{"EN":938},"Department of Chemistry, University of Delaware, Newark, Delaware, and Polychemicals Department, E. I. duPont de Nemours and Company, Wilmington, Delaware",[],{"title":941,"openalex":943},{"EN":942},"V. Kokle",{"VOID":944},"A5087745533",{"id":946,"sortIndex":73,"researcher":19,"roles":947,"affiliations":948,"properties":955},"67bd9c1c-8c4d-4086-bbb3-aaad3cd9349a",[],[949],{"id":933,"sortIndex":20,"affiliation":950,"properties":19},{"id":933,"createTime":19,"updateTime":19,"relativeEntities":951,"slug":19,"properties":952,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":954,"statistic":19},[],{"title":953},{"EN":938},[],{"title":956,"openalex":958},{"EN":957},"Fred W. Billmeyer",{"VOID":959},"A5069338941",{"id":961,"sortIndex":179,"researcher":19,"roles":962,"affiliations":963,"properties":970},"ead163f2-285d-4faa-bceb-1fae376022ff",[],[964],{"id":933,"sortIndex":20,"affiliation":965,"properties":19},{"id":933,"createTime":19,"updateTime":19,"relativeEntities":966,"slug":19,"properties":967,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":969,"statistic":19},[],{"title":968},{"EN":938},[],{"title":971,"openalex":973},{"EN":972},"L. T. Muus",{"VOID":974},"A5091357528",{"id":976,"sortIndex":543,"researcher":19,"roles":977,"affiliations":978,"properties":985},"813bf974-ecb0-4485-9ce7-577cff2e972f",[],[979],{"id":933,"sortIndex":20,"affiliation":980,"properties":19},{"id":933,"createTime":19,"updateTime":19,"relativeEntities":981,"slug":19,"properties":982,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":984,"statistic":19},[],{"title":983},{"EN":938},[],{"title":986,"openalex":988},{"EN":987},"E. J. Newitt",{"VOID":989},"A5061064938",{"url":19,"publisher":991,"properties":1000},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":992,"slug":10,"properties":993,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":997,"manageAffiliations":998,"indexDatabases":999,"url":19,"thumbnailPath":19,"statistic":19,"gsStatistic":19,"type":19,"analyzePriority":19},[],{"issn":994,"title":995,"eissn":996},{"VOID":13},{"EN":10},{"VOID":16},[],[],[],{"issue":1001,"pages":1003,"volume":1005},{"VOID":1002},"173",{"VOID":1004},"251-261",{"VOID":1006},"62",34,{"total":1007,"publishYear":1009,"statisticByYear":1010},1962,{},"1962-11-01",[],[1014,1017,1020,1023,1026,1029,1032,1035,1038,1041,1044,1047,1050,1053,1056,1059,1062,1065,1068,1071,1074,1077,1080,1083,1086,1089,1092,1095,1098,1101,1104,1107,1110,1113,1116,1119,1122,1125,1128],{"id":19,"text":1015,"url":19,"identifiers":1016},"10.1002\u002Fpol.1959.1203512806",{"doi":1015},{"id":19,"text":1018,"url":19,"identifiers":1019},"10.1002\u002Fpol.1959.1203913545",{"doi":1018},{"id":19,"text":1021,"url":19,"identifiers":1022},"10.1002\u002Fpol.1959.1203913546",{"doi":1021},{"id":19,"text":1024,"url":19,"identifiers":1025},"Bebbington F. E.Hunter andR. B.Richards paper presented at the12th Intern. Congr. Pure Appl. Chem. New York Sept. 1951.",{},{"id":19,"text":1027,"url":19,"identifiers":1028},"10.1002\u002Fbscb.19500590707",{"doi":1027},{"id":19,"text":1030,"url":19,"identifiers":1031},"10.1002\u002Fpol.1957.1202310432",{"doi":1030},{"id":19,"text":1033,"url":19,"identifiers":1034},"10.1002\u002Fpol.1958.1202811808",{"doi":1033},{"id":19,"text":1036,"url":19,"identifiers":1037},"10.1002\u002Fpol.1956.120209609",{"doi":1036},{"id":19,"text":1039,"url":19,"identifiers":1040},"10.1002\u002Fmacp.1952.020080102",{"doi":1039},{"id":19,"text":1042,"url":19,"identifiers":1043},"10.1021\u002Fja01120a007",{"doi":1042},{"id":19,"text":1045,"url":19,"identifiers":1046},"10.1021\u002Fja01576a001",{"doi":1045},{"id":19,"text":1048,"url":19,"identifiers":1049},"10.1021\u002Fja01576a004",{"doi":1048},{"id":19,"text":1051,"url":19,"identifiers":1052},"Duch E., 1956, Z. Electrochem., 60, 218",{},{"id":19,"text":1054,"url":19,"identifiers":1055},"10.1002\u002Fpol.1957.1202410524",{"doi":1054},{"id":19,"text":1057,"url":19,"identifiers":1058},"10.1002\u002Fpol.1956.120209413",{"doi":1057},{"id":19,"text":1060,"url":19,"identifiers":1061},"10.1002\u002Fpol.1958.1202911915",{"doi":1060},{"id":19,"text":1063,"url":19,"identifiers":1064},"10.1002\u002Fpol.1957.1202310433",{"doi":1063},{"id":19,"text":1066,"url":19,"identifiers":1067},"10.1021\u002Fja01522a015",{"doi":1066},{"id":19,"text":1069,"url":19,"identifiers":1070},"10.1002\u002Fpol.1952.120080401",{"doi":1069},{"id":19,"text":1072,"url":19,"identifiers":1073},"10.1002\u002Fpol.1958.1202811705",{"doi":1072},{"id":19,"text":1075,"url":19,"identifiers":1076},"10.1002\u002Fpol.1949.120040408",{"doi":1075},{"id":19,"text":1078,"url":19,"identifiers":1079},"10.1002\u002Fpol.1952.120090614",{"doi":1078},{"id":19,"text":1081,"url":19,"identifiers":1082},"10.1002\u002Fpol.1957.1202410702",{"doi":1081},{"id":19,"text":1084,"url":19,"identifiers":1085},"Fawcett E. W. R. O.Gibson andM. W.Perrin U. S. Pat. 2 153 553 (1939).",{},{"id":19,"text":1087,"url":19,"identifiers":1088},"10.1021\u002Fja01209a509",{"doi":1087},{"id":19,"text":1090,"url":19,"identifiers":1091},"10.1002\u002Fpol.1954.120147407",{"doi":1090},{"id":19,"text":1093,"url":19,"identifiers":1094},"10.1021\u002Fja01576a003",{"doi":1093},{"id":19,"text":1096,"url":19,"identifiers":1097},"10.1364\u002FJOSA.51.000452",{"doi":1096},{"id":19,"text":1099,"url":19,"identifiers":1100},"10.1002\u002Fpol.1959.1203613008",{"doi":1099},{"id":19,"text":1102,"url":19,"identifiers":1103},"10.1002\u002Fpol.1959.1203613002",{"doi":1102},{"id":19,"text":1105,"url":19,"identifiers":1106},"10.1002\u002Fpol.1959.1203613023",{"doi":1105},{"id":19,"text":1108,"url":19,"identifiers":1109},"10.1002\u002Fpol.1959.1203613010",{"doi":1108},{"id":19,"text":1111,"url":19,"identifiers":1112},"10.1002\u002Frecl.19510700409",{"doi":1111},{"id":19,"text":1114,"url":19,"identifiers":1115},"10.1002\u002Frecl.19520710610",{"doi":1114},{"id":19,"text":1117,"url":19,"identifiers":1118},"10.1002\u002Fpol.1958.1202811709",{"doi":1117},{"id":19,"text":1120,"url":19,"identifiers":1121},"10.1139\u002Fv61-198",{"doi":1120},{"id":19,"text":1123,"url":19,"identifiers":1124},"Wippler C. private communication.",{},{"id":19,"text":1126,"url":19,"identifiers":1127},"10.1002\u002Fpol.1958.1203112323",{"doi":1126},{"id":19,"text":1129,"url":19,"identifiers":1130},"10.1002\u002Fmacp.1956.020200109",{"doi":1129},{"id":1132,"createTime":1133,"updateTime":1133,"relativeEntities":1134,"slug":1135,"properties":1136,"entityType":47,"verifyStatus":48,"verifyTime":1133,"verifyNote":49,"languages":1146,"translateLanguages":19,"viewCount":20,"primaryUrl":1147,"fullTextUrl":19,"authors":1148,"publicationType":87,"publisherRelationship":1166,"citationCount":1183,"citationInfo":1184,"publishDate":1186,"publishYear":349,"citationAnalyzeStatus":18,"lastCitationAnalyze":19,"indexDatabases":1187,"openAccess":19,"references":1188,"isForceReanalyzing":124},"a66d7e3f-27ad-406b-b47c-50721cb0958b","2024-12-26T02:19:15.119+00:00",[],"A-light-scattering-study-of-low-pressure-polyethylene-fractions",{"openalex":1137,"mag":1139,"abstract":1141,"title":1143,"doi":1145},{"VOID":1138},"W2010647750",{"VOID":1140},"2010647750",{"EN":1142},"\u003Cjats:title>Abstract\u003C\u002Fjats:title>\u003Cjats:p>Low pressure polyethylene fractions of molecular weight above 100,000 have been studied by the light scattering method. The presence of long chain branches in fractions of molecular weight above 300,000 was indicated by the data. The molecular weight‐intrinsic viscosity relationship for linear polyethylene chains was found to be [η] = 4.60 × 10\u003Cjats:sup>−4\u003C\u002Fjats:sup> \u003Cjats:italic>M\u003C\u002Fjats:italic>\u003Cjats:sup>0.725\u003C\u002Fjats:sup> when tetralin at 130°C. was used as the solvent for the intrinsic viscosity measurements. This relationship gives molecular weights about 1.15 times higher than those found previously by the number‐average molecular weight determination of the fractions.\u003C\u002Fjats:p>",{"EN":1144},"A light‐scattering study of low pressure polyethylene fractions",{"VOID":1105},[51],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1002\u002Fpol.1959.1203613023",[1149],{"id":1150,"sortIndex":20,"researcher":19,"roles":1151,"affiliations":1152,"properties":1161},"56912840-4637-4340-86d6-c9059343c8ef",[],[1153],{"id":1154,"sortIndex":20,"affiliation":1155,"properties":19},"6d24bf2c-fdc1-4772-874f-b9b2fccc2f42",{"id":1154,"createTime":19,"updateTime":19,"relativeEntities":1156,"slug":19,"properties":1157,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1160,"statistic":19},[],{"title":1158},{"EN":1159},"Polychemicals Research Department, High Pressure Laboratory, The Dow Chemical Company, Midland, Michigan",[],{"title":1162,"openalex":1164},{"EN":1163},"L. H. Tung",{"VOID":1165},"A5113584028",{"url":19,"publisher":1167,"properties":1176},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1168,"slug":10,"properties":1169,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":1173,"manageAffiliations":1174,"indexDatabases":1175,"url":19,"thumbnailPath":19,"statistic":19,"gsStatistic":19,"type":19,"analyzePriority":19},[],{"issn":1170,"title":1171,"eissn":1172},{"VOID":13},{"EN":10},{"VOID":16},[],[],[],{"issue":1177,"pages":1179,"volume":1181},{"VOID":1178},"130",{"VOID":1180},"287-294",{"VOID":1182},"36",59,{"total":1183,"publishYear":349,"statisticByYear":1185},{"2020":73},"1959-04-01",[],[1189,1191,1194,1197,1200,1202,1204,1206,1209,1212,1215,1218,1221,1224,1227],{"id":19,"text":1081,"url":19,"identifiers":1190},{"doi":1081},{"id":19,"text":1192,"url":19,"identifiers":1193},"10.1002\u002Fpol.1956.1202210024",{"doi":1192},{"id":19,"text":1195,"url":19,"identifiers":1196},"23 887(1957).",{},{"id":19,"text":1198,"url":19,"identifiers":1199},"P. M.Henry Fractionation of Polyethylene Presented at the 132nd meeting of the American Chemical Society New York September 1957.",{},{"id":19,"text":1042,"url":19,"identifiers":1201},{"doi":1042},{"id":19,"text":1057,"url":19,"identifiers":1203},{"doi":1057},{"id":19,"text":1045,"url":19,"identifiers":1205},{"doi":1045},{"id":19,"text":1207,"url":19,"identifiers":1208},"10.1002\u002Frecl.19540730302",{"doi":1207},{"id":19,"text":1210,"url":19,"identifiers":1211},"10.1364\u002FJOSA.41.000460",{"doi":1210},{"id":19,"text":1213,"url":19,"identifiers":1214},"10.1364\u002FJOSA.40.000768",{"doi":1213},{"id":19,"text":1216,"url":19,"identifiers":1217},"10.1139\u002Fv52-098",{"doi":1216},{"id":19,"text":1219,"url":19,"identifiers":1220},"Zimm B. H., 1949, Can. J. Chem., 17, 1301",{},{"id":19,"text":1222,"url":19,"identifiers":1223},"10.1111\u002Fj.1749-6632.1953.tb36408.x",{"doi":1222},{"id":19,"text":1225,"url":19,"identifiers":1226},"Eirich F., 1956, Kunststoffe‐Plastics, 3, 136",{},{"id":19,"text":1048,"url":19,"identifiers":1228},{"doi":1048},{"id":1230,"createTime":1231,"updateTime":1231,"relativeEntities":1232,"slug":1233,"properties":1234,"entityType":47,"verifyStatus":48,"verifyTime":1244,"verifyNote":49,"languages":1245,"translateLanguages":19,"viewCount":20,"primaryUrl":1246,"fullTextUrl":19,"authors":1247,"publicationType":87,"publisherRelationship":1265,"citationCount":1280,"citationInfo":1281,"publishDate":1186,"publishYear":349,"citationAnalyzeStatus":18,"lastCitationAnalyze":19,"indexDatabases":1283,"openAccess":19,"references":1284,"isForceReanalyzing":124},"fe9f3b2a-cfb5-4039-a822-9e63f03d0299","2024-12-26T02:19:14.821+00:00",[],"Fractionation-of-polyethylene",{"openalex":1235,"mag":1237,"abstract":1239,"title":1241,"doi":1243},{"VOID":1236},"W2002398703",{"VOID":1238},"2002398703",{"EN":1240},"\u003Cjats:title>Abstract\u003C\u002Fjats:title>\u003Cjats:p>A procedure and apparatus are described for the large scale (50‐gram) fractionation of high‐density polyethylene by Desreaux's fractional extraction technique. Two samples of Ziegler polyethylene were fractionated by this technique and the intrinsic viscosity in decalin at 135°C. and molecular weight by light scattering were measured on the fractions. The relationship [η] = 4.6 × 10\u003Cjats:sup>−4\u003C\u002Fjats:sup> \u003Cjats:italic>M̄\u003C\u002Fjats:italic>\u003Cjats:sub>w\u003C\u002Fjats:sub>\u003Cjats:sup>0.73\u003C\u002Fjats:sup> was found to hold for molecular weights between 25,000 and 640,000. The samples differed in polydispersity, one having a broad distribution and the other a rather narrow distribution. Evidence for the sharpness of the fractions obtained by the new technique was provided by refractionating of one fraction and the resolation of two fractions which were combined and refractionated.\u003C\u002Fjats:p>",{"EN":1242},"Fractionation of polyethylene",{"VOID":1102},"2024-12-26T02:19:14.820+00:00",[51],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1002\u002Fpol.1959.1203613002",[1248],{"id":1249,"sortIndex":20,"researcher":19,"roles":1250,"affiliations":1251,"properties":1260},"d1d8bb44-bf4a-41d6-b606-324df3af04b9",[],[1252],{"id":1253,"sortIndex":20,"affiliation":1254,"properties":19},"7fc181fc-cd49-4422-89cf-0fb417574180",{"id":1253,"createTime":19,"updateTime":19,"relativeEntities":1255,"slug":19,"properties":1256,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1259,"statistic":19},[],{"title":1257},{"EN":1258},"Research Center, Hercules Powder Company, Wilmington, Delaware",[],{"title":1261,"openalex":1263},{"EN":1262},"Patrick M. 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Polymer Sci. to be published.",{},{"id":19,"text":1081,"url":19,"identifiers":1291},{"doi":1081},{"id":19,"text":1192,"url":19,"identifiers":1293},{"doi":1192},{"id":19,"text":1042,"url":19,"identifiers":1295},{"doi":1042},{"id":19,"text":1297,"url":19,"identifiers":1298},"10.1063\u002F1.1747157",{"doi":1297},{"id":19,"text":1300,"url":19,"identifiers":1301},"10.1002\u002Fpol.1952.120080505",{"doi":1300},{"id":19,"text":1063,"url":19,"identifiers":1303},{"doi":1063},{"id":19,"text":1099,"url":19,"identifiers":1305},{"doi":1099},{"id":19,"text":1307,"url":19,"identifiers":1308},"10.1063\u002F1.1746195",{"doi":1307},{"id":19,"text":1310,"url":19,"identifiers":1311},"10.1002\u002Fpol.1954.120147304",{"doi":1310},{"id":19,"text":1313,"url":19,"identifiers":1314},"10.1063\u002F1.1746738",{"doi":1313},{"id":19,"text":1316,"url":19,"identifiers":1317},"L. H.Tung private communication.",{},{"id":19,"text":1048,"url":19,"identifiers":1319},{"doi":1048},{"id":19,"text":1321,"url":19,"identifiers":1322},"10.1021\u002Fja01149a002",{"doi":1321},{"id":19,"text":1129,"url":19,"identifiers":1324},{"doi":1129},{"id":1326,"createTime":1327,"updateTime":1327,"relativeEntities":1328,"slug":1329,"properties":1330,"entityType":47,"verifyStatus":48,"verifyTime":1327,"verifyNote":49,"languages":1340,"translateLanguages":19,"viewCount":20,"primaryUrl":1341,"fullTextUrl":19,"authors":1342,"publicationType":87,"publisherRelationship":1358,"citationCount":1373,"citationInfo":1374,"publishDate":1186,"publishYear":349,"citationAnalyzeStatus":18,"lastCitationAnalyze":19,"indexDatabases":1376,"openAccess":19,"references":1377,"isForceReanalyzing":124},"55aa5a6f-4a74-42c2-a324-6085beae389c","2024-12-26T02:19:06.213+00:00",[],"Comments-on-intrinsic-viscosity-weight-average-molecular-weight-relationships-for-polyethylene",{"openalex":1331,"mag":1333,"abstract":1335,"title":1337,"doi":1339},{"VOID":1332},"W2171848033",{"VOID":1334},"2171848033",{"EN":1336},"\u003Cjats:title>Abstract\u003C\u002Fjats:title>\u003Cjats:p>Relationships, as reported in the literature, between intrinsic viscosity and weight‐average molecular weight for high‐density polyethylene are in poor agreement. Experimental work in this laboratory, aimed at resolving similarly conflicting data, suggests that likely causes for these discrepancies are: polydispersity, incorrect dissymmetry correction, and inadequate solution clarification. These factors are discussed in some detail, and results on both fractionated and unfractionated samples support these conclusions. It is apparent that fairly narrow fractions must be studied to obtain a valid intrinsic viscosity‐weight‐average molecular weight relationship.\u003C\u002Fjats:p>",{"EN":1338},"Comments on intrinsic viscosity–weight‐average molecular weight relationships for polyethylene",{"VOID":1099},[51],"https:\u002F\u002Fonlinelibrary.wiley.com\u002Fdoi\u002F10.1002\u002Fpol.1959.1203613008",[1343],{"id":1344,"sortIndex":20,"researcher":19,"roles":1345,"affiliations":1346,"properties":1353},"e765a56e-d096-4f0e-88e4-bdd832d879fc",[],[1347],{"id":1253,"sortIndex":20,"affiliation":1348,"properties":19},{"id":1253,"createTime":19,"updateTime":19,"relativeEntities":1349,"slug":19,"properties":1350,"entityType":19,"verifyStatus":19,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":19,"url":19,"parentIds":1352,"statistic":19},[],{"title":1351},{"EN":1258},[],{"title":1354,"openalex":1356},{"EN":1355},"R. Chiang",{"VOID":1357},"A5111173758",{"url":19,"publisher":1359,"properties":1368},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1360,"slug":10,"properties":1361,"entityType":17,"verifyStatus":18,"verifyTime":19,"verifyNote":19,"languages":19,"translateLanguages":19,"viewCount":20,"subjectFields":1365,"manageAffiliations":1366,"indexDatabases":1367,"url":19,"thumbnailPath":19,"statistic":19,"gsStatistic":19,"type":19,"analyzePriority":19},[],{"issn":1362,"title":1363,"eissn":1364},{"VOID":13},{"EN":10},{"VOID":16},[],[],[],{"issue":1369,"pages":1370,"volume":1372},{"VOID":1178},{"VOID":1371},"91-103",{"VOID":1182},154,{"total":1373,"publishYear":349,"statisticByYear":1375},{"2012":543,"2014":179,"2017":73,"2018":179,"2019":179,"2020":73,"2021":73,"2023":543},[],[1378,1380,1383,1385,1387,1389,1391,1393,1396,1398,1400,1402,1405,1408,1411,1414,1416],{"id":19,"text":1057,"url":19,"identifiers":1379},{"doi":1057},{"id":19,"text":1381,"url":19,"identifiers":1382},"Duch E., 1956, Z. Elektrochem., 60, 218",{},{"id":19,"text":1048,"url":19,"identifiers":1384},{"doi":1048},{"id":19,"text":1063,"url":19,"identifiers":1386},{"doi":1063},{"id":19,"text":1081,"url":19,"identifiers":1388},{"doi":1081},{"id":19,"text":1042,"url":19,"identifiers":1390},{"doi":1042},{"id":19,"text":1129,"url":19,"identifiers":1392},{"doi":1129},{"id":19,"text":1394,"url":19,"identifiers":1395},"We obtained the same factor for both branched and unbranched samples.",{},{"id":19,"text":1126,"url":19,"identifiers":1397},{"doi":1126},{"id":19,"text":1036,"url":19,"identifiers":1399},{"doi":1036},{"id":19,"text":1045,"url":19,"identifiers":1401},{"doi":1045},{"id":19,"text":1403,"url":19,"identifiers":1404},"D. C.Smith Paper presented at the Meeting of the American Chemical Society Dallas April 1956.",{},{"id":19,"text":1406,"url":19,"identifiers":1407},"Flory P. J., 1953, Principles of Polymer Chemistry, 313",{},{"id":19,"text":1409,"url":19,"identifiers":1410},"10.1002\u002Fpol.1954.120147704",{"doi":1409},{"id":19,"text":1412,"url":19,"identifiers":1413},"Baker C. A., J. Chem. Soc., 1956, 2352",{},{"id":19,"text":1054,"url":19,"identifiers":1415},{"doi":1054},{"id":19,"text":1417,"url":19,"identifiers":1418},"10.1021\u002Fj150521a010",{"doi":1417}]