Polycyclic aromatic hydrocarbons in the graphene era
Tóm tắt
Từ khóa
Tài liệu tham khảo
Ferrari AC, Bonaccorso F, Fal’ko V, Novoselov KS, Roche S, Bøggild P, Borini S, Koppens FHL, Palermo V, Pugno N, Garrido JA, Sordan R, Bianco A, Ballerini L, Prato M, Lidorikis E, Kivioja J, Marinelli C, Ryhänen T, Morpurgo A, Coleman JN, Nicolosi V, Colombo L, Fert A, Garcia-Hernandez M, Bachtold A, Schneider GF, Guinea F, Dekker C, Barbone M, Sun Z, Galiotis C, Grigorenko AN, Konstantatos G, Kis A, Katsnelson M, Vandersypen L, Loiseau A, Morandi V, Neumaier D, Treossi E, Pellegrini V, Polini M, Tredicucci A, Williams GM, Hee Hong B, Ahn JH, Min Kim J, Zirath H, van Wees BJ, van der Zant H, Occhipinti L, Di Matteo A, Kinloch IA, Seyller T, Quesnel E, Feng X, Teo K, Rupesinghe N, Hakonen P, Neil SRT, Tannock Q, Löfwander T, Kinaret J. Nanoscale, 2015, 7: 4598–4810
Peierls RE. Ann Inst Henri Poincare, 1935, 5: 177–222
Landau LD. Phys Z Sowjetunion, 1937, 11: 26–35
Novoselov KS, Geim AK, Morozov SV, Jiang D, Zhang Y, Dubonos SV, Grigorieva IV, Firsov AA. Science, 2004, 306: 666–669
Müllen K, Wegner G. Electronic Materials: the Oligomer Approach. Weinheim: John Wiley & Sons, 2008
Li X, Cai W, An J, Kim S, Nah J, Yang D, Piner R, Velamakanni A, Jung I, Tutuc E, Banerjee SK, Colombo L, Ruoff RS. Science, 2009, 324: 1312–1314
Bae S, Kim H, Lee Y, Xu X, Park JS, Zheng Y, Balakrishnan J, Lei T, Ri Kim H, Song YI, Kim YJ, Kim KS, Özyilmaz B, Ahn JH, Hong BH, Iijima S. Nat Nanotech, 2010, 5: 574–578
Lin YM, Dimitrakopoulos C, Jenkins KA, Farmer DB, Chiu HY, Grill A, Avouris P. Science, 2010, 327: 662
Tzalenchuk A, Lara-Avila S, Kalaboukhov A, Paolillo S, Syväjärvi M, Yakimova R, Kazakova O, Janssen TJBM, Fal’ko V, Kubatkin S. Nat Nanotech, 2010, 5: 186–189
Tan YZ, Yang B, Parvez K, Narita A, Osella S, Beljonne D, Feng X, Müllen K. Nat Commun, 2013, 4: 2646
Dewar MJS. The Molecular Orbital Theory of Organic Chemistry. New York: McGraw-Hill, 1969
Dong L, Wang S, Wang W, Chen C, Lin T, Adisoejoso J, Lin N. Transition metals trigger on-surface ullmann coupling reaction: intermediate, catalyst and template. In: Gourdon A, Ed. On-Surface Synthesis. Advances in Atom and Single Molecule Machines. Cham: Springer International Publishing, 2016. 23–42
Simpson CD, Brand JD, Berresheim AJ, Przybilla L, Räder HJ, Müllen K. Chem Eur J, 2002, 8: 1424–1429
Scott LT, Boorum MM, McMahon BJ, Hagen S, Mack J, Blank J, Wegner H, de Meijere A. Science, 2002, 295: 1500–1503
Mallory FB, Mallory CW. Org React, 2004, 30: 1
Xiao S, Myers M, Miao Q, Sanaur S, Pang K, Steigerwald ML, Nuckolls C. Angew Chem Int Ed, 2005, 44: 7390–7394
Schuler B, Collazos S, Gross L, Meyer G, Pérez D, Guitián E, Peña D. Angew Chem Int Ed, 2014, 53: 9004–9006
Schwab MG, Narita A, Hernandez Y, Balandina T, Mali KS, De Feyter S, Feng X, Müllen K. J Am Chem Soc, 2012, 134: 18169–18172
Wu J, Gherghel L, Watson MD, Li J, Wang Z, Simpson CD, Kolb U, Müllen K. Macromolecules, 2003, 36: 7082–7089
Narita A, Feng X, Hernandez Y, Jensen SA, Bonn M, Yang H, Verzhbitskiy IA, Casiraghi C, Hansen MR, Koch AHR, Fytas G, Ivasenko O, Li B, Mali KS, Balandina T, Mahesh S, De Feyter S, Müllen K. Nat Chem, 2013, 6: 126–132
Konnerth R, Cervetti C, Narita A, Feng X, Müllen K, Hoyer A, Burghard M, Kern K, Dressel M, Bogani L. Nanoscale, 2015, 7: 12807–12811
Soavi G, Dal Conte S, Manzoni C, Viola D, Narita A, Hu Y, Feng X, Hohenester U, Molinari E, Prezzi D, Müllen K, Cerullo G. Nat Commun, 2016, 7: 11010
Verzhbitskiy IA, Corato MD, Ruini A, Molinari E, Narita A, Hu Y, Schwab MG, Bruna M, Yoon D, Milana S, Feng X, Müllen K, Ferrari AC, Casiraghi C, Prezzi D. Nano Lett, 2016, 16: 3442–3447
Zhao S, Rondin L, Delport G, Voisin C, Beser U, Hu Y, Feng X, Müllen K, Narita A, Campidelli S, Lauret JS. Carbon, 2017, 119: 235–240
El Gemayel M, Narita A, Dössel LF, Sundaram RS, Kiersnowski A, Pisula W, Hansen MR, Ferrari AC, Orgiu E, Feng X, Müllen K, Samori P. Nanoscale, 2014, 6: 6301–6314
Ivanov I, Hu Y, Osella S, Beser U, Wang HI, Beljonne D, Narita A, Müllen K, Turchinovich D, Bonn M. J Am Chem Soc, 2017, 139: 7982–7988
Jensen SA, Ulbricht R, Narita A, Feng X, Müllen K, Hertel T, Turchinovich D, Bonn M. Nano Lett, 2013, 13: 5925–5930
Huang Y, Mai Y, Beser U, Teyssandier J, Velpula G, van Gorp H, Straasø LA, Hansen MR, Rizzo D, Casiraghi C, Yang R, Zhang G, Wu D, Zhang F, Yan D, De Feyter S, Müllen K, Feng X. J Am Chem Soc, 2016, 138: 10136–10139
Schwab MG, Narita A, Osella S, Hu Y, Maghsoumi A, Mavrinsky A, Pisula W, Castiglioni C, Tommasini M, Beljonne D, Feng X, Müllen K. Chem Asian J, 2015, 10: 2134–2138
Cai J, Ruffieux P, Jaafar R, Bieri M, Braun T, Blankenburg S, Muoth M, Seitsonen AP, Saleh M, Feng X, Müllen K, Fasel R. Nature, 2010, 466: 470–473
Zhang H, Lin H, Sun K, Chen L, Zagranyarski Y, Aghdassi N, Duhm S, Li Q, Zhong D, Li Y, Müllen K, Fuchs H, Chi L. J Am Chem Soc, 2015, 137: 4022–4025
Sun K, Ji P, Zhang H, Niu K, Li L, Chen A, Li Q, Müllen K, Chi L. Faraday Discuss, 2017, 204: 297–305
Chen Z, Zhang W, Palma CA, Lodi Rizzini A, Liu B, Abbas A, Richter N, Martini L, Wang XY, Cavani N, Lu H, Mishra N, Coletti C, Berger R, Klappenberger F, Kläui M, Candini A, Affronte M, Zhou C, de Renzi V, del Pennino U, Barth JV, Räder HJ, Narita A, Feng X, Müllen K. J Am Chem Soc, 2016, 138: 15488–15496
Magda GZ, Jin X, Hagymási I, Vancsó P, Osváth Z, Nemes-Incze P, Hwang C, Biró LP, Tapasztó L. Nature, 2014, 514: 608–611
Talirz L, Söde H, Dumslaff T, Wang S, Sanchez-Valencia JR, Liu J, Shinde P, Pignedoli CA, Liang L, Meunier V, Plumb NC, Shi M, Feng X, Narita A, Müllen K, Fasel R, Ruffieux P. ACS Nano, 2017, 11: 1380–1388
Jordan RS, Li YL, Lin CW, McCurdy RD, Lin JB, Brosmer JL, Marsh KL, Khan SI, Houk KN, Kaner RB, Rubin Y. J Am Chem Soc, 2017, 139: 15878–15890
Jänsch D, Ivanov I, Zagranyarski Y, Duznovic I, Baumgarten M, Turchinovich D, Li C, Bonn M, Müllen K. Chem Eur J, 2017, 23: 4870–4875
Chen Z, Wang HI, Bilbao N, Teyssandier J, Prechtl T, Cavani N, Tries A, Biagi R, de Renzi V, Feng X, Kläui M, de Feyter S, Bonn M, Narita A, Müllen K. J Am Chem Soc, 2017, 139: 9483–9486
Kimouche A, Ervasti MM, Drost R, Halonen S, Harju A, Joensuu PM, Sainio J, Liljeroth P. Nat Commun, 2015, 6: 10177
Basagni A, Sedona F, Pignedoli CA, Cattelan M, Nicolas L, Casarin M, Sambi M. J Am Chem Soc, 2015, 137: 1802–1808
Xu X, Zhang Z, Qiu L, Zhuang J, Zhang L, Wang H, Liao C, Song H, Qiao R, Gao P, Hu Z, Liao L, Liao Z, Yu D, Wang E, Ding F, Peng H, Liu K. Nat Nanotech, 2016, 11: 930–935
Ruffieux P, Wang S, Yang B, Sánchez-Sánchez C, Liu J, Dienel T, Talirz L, Shinde P, Pignedoli CA, Passerone D, Dumslaff T, Feng X, Müllen K, Fasel R. Nature, 2016, 531: 489–492
Girit CO, Meyer JC, Erni R, Rossell MD, Kisielowski C, Yang L, Park CH, Crommie MF, Cohen ML, Louie SG, Zettl A. Science, 2009, 323: 1705–1708
Dumslaff T, Yang B, Maghsoumi A, Velpula G, Mali KS, Castiglioni C, de Feyter S, Tommasini M, Narita A, Feng X, Müllen K. J Am Chem Soc, 2016, 138: 4726–4729
Gröning O, Wang S, Yao X, Pignedoli CA, Borin Barin G, Daniels C, Cupo A, Meunier V, Feng X, Narita A, Müllen K, Ruffieux P, Fasel R. Nature, 2018, 560: 209–213
Rizzo DJ, Veber G, Cao T, Bronner C, Chen T, Zhao F, Rodriguez H, Louie SG, Crommie MF, Fischer FR. Nature, 2018, 560: 204–208
Krüger J, Garcia F, Eisenhut F, Skidin D, Alonso JM, Guitián E, Pérez D, Cuniberti G, Moresco F, Peña D. Angew Chem Int Ed, 2017, 56: 11945–11948
Zuzak R, Dorel R, Kolmer M, Szymonski M, Godlewski S, Echavarren AM. Angew Chem Int Ed, 2018, 57: 10500–10505
Ajayakumar MR, Fu Y, Ma J, Hennersdorf F, Komber H, Weigand JJ, Alfonsov A, Popov AA, Berger R, Liu J, Müllen K, Feng X. J Am Chem Soc, 2018, 140: 6240–6244
Ni Y, Gopalakrishna TY, Phan H, Herng TS, Wu S, Han Y, Ding J, Wu J. Angew Chem Int Ed, 2018, 57: 9697–9701
Rogers C, Chen C, Pedramrazi Z, Omrani AA, Tsai HZ, Jung HS, Lin S, Crommie MF, Fischer FR. Angew Chem Int Ed, 2015, 54: 15143–15146
Zeng W, Phan H, Herng TS, Gopalakrishna TY, Aratani N, Zeng Z, Yamada H, Ding J, Wu J. Chem, 2017, 2: 81–92
Konishi A, Hirao Y, Matsumoto K, Kurata H, Kishi R, Shigeta Y, Nakano M, Tokunaga K, Kamada K, Kubo T. J Am Chem Soc, 2013, 135: 1430–1437
Konishi A, Hirao Y, Nakano M, Shimizu A, Botek E, Champagne B, Shiomi D, Sato K, Takui T, Matsumoto K, Kurata H, Kubo T. J Am Chem Soc, 2010, 132: 11021–11023
Talirz L, Söde H, Cai J, Ruffieux P, Blankenburg S, Jafaar R, Berger R, Feng X, Müllen K, Passerone D, Fasel R, Pignedoli CA. J Am Chem Soc, 2013, 135: 2060–2063
Paternò GM, Chen Q, Wang XY, Liu J, Motti SG, Petrozza A, Feng X, Lanzani G, Müllen K, Narita A, Scotognella F. Angew Chem Int Ed, 2017, 56: 6753–6757
Ball M, Zhong Y, Wu Y, Schenck C, Ng F, Steigerwald M, Xiao S, Nuckolls C. Acc Chem Res, 2015, 48: 267–276
Liu J, Li BW, Tan YZ, Giannakopoulos A, Sanchez-Sanchez C, Beljonne D, Ruffieux P, Fasel R, Feng X, Müllen K. J Am Chem Soc, 2015, 137: 6097–6103
Berezhnaia V, Roy M, Vanthuyne N, Villa M, Naubron JV, Rodriguez J, Coquerel Y, Gingras M. J Am Chem Soc, 2017, 139: 18508–18511
Hosokawa T, Takahashi Y, Matsushima T, Watanabe S, Kikkawa S, Azumaya I, Tsurusaki A, Kamikawa K. J Am Chem Soc, 2017, 139: 18512–18521
Zhu Y, Xia Z, Cai Z, Yuan Z, Jiang N, Li T, Wang Y, Guo X, Li Z, Ma S, Zhong D, Li Y, Wang J. J Am Chem Soc, 2018, 140: 4222–4226
Schuster NJ, Paley DW, Jockusch S, Ng F, Steigerwald ML, Nuckolls C. Angew Chem Int Ed, 2016, 55: 13519–13523
Evans PJ, Ouyang J, Favereau L, Crassous J, Fernández I, Perles J, Martin N. Angew Chem Int Ed, 2018, 57: 6774–6779
Georgakilas V, Otyepka M, Bourlinos AB, Chandra V, Kim N, Kemp KC, Hobza P, Zboril R, Kim KS. Chem Rev, 2012, 112: 6156–6214
Englert JM, Dotzer C, Yang G, Schmid M, Papp C, Gottfried JM, Steinrück HP, Spiecker E, Hauke F, Hirsch A. Nat Chem, 2011, 3: 279–286
Fogel Y, Kastler M, Wang Z, Andrienko D, Bodwell GJ, Müllen K. J Am Chem Soc, 2007, 129: 11743–11749
Elias DC, Nair RR, Mohiuddin TMG, Morozov SV, Blake P, Halsall MP, Ferrari AC, Boukhvalov DW, Katsnelson MI, Geim AK, Novoselov KS. Science, 2009, 323: 610–613
Tan YZ, Osella S, Liu Y, Yang B, Beljonne D, Feng X, Müllen K. Angew Chem Int Ed, 2015, 54: 2927–2931
Wu ZS, Tan YZ, Zheng S, Wang S, Parvez K, Qin J, Shi X, Sun C, Bao X, Feng X, Müllen K. J Am Chem Soc, 2017, 139: 4506–4512
Dong R, Pfeffermann M, Skidin D, Wang F, Fu Y, Narita A, Tommasini M, Moresco F, Cuniberti G, Berger R, Müllen K, Feng X. J Am Chem Soc, 2017, 139: 2168–2171
Keerthi A, Radha B, Rizzo D, Lu H, Diez Cabanes V, Hou ICY, Beljonne D, Cornil J, Casiraghi C, Baumgarten M, Müllen K, Narita A. J Am Chem Soc, 2017, 139: 16454–16457
Dössel LF, Kamm V, Howard IA, Laquai F, Pisula W, Feng X, Li C, Takase M, Kudernac T, de Feyter S, Müllen K. J Am Chem Soc, 2012, 134: 5876–5886
Slota M, Keerthi A, Myers WK, Tretyakov E, Baumgarten M, Ardavan A, Sadeghi H, Lambert CJ, Narita A, Müllen K, Bogani L. Nature, 2018, 557: 691–695
Rogers C, Perkins WS, Veber G, Williams TE, Cloke RR, Fischer FR. J Am Chem Soc, 2017, 139: 4052–4061
González-Herrero H, Gómez-Rodríguez JM, Mallet P, Moaied M, Palacios JJ, Salgado C, Ugeda MM, Veuillen JY, Yndurain F, Brihuega I. Science, 2016, 352: 437–441
Thrower PA. Chem Phys Carbon, 1969, 5: 217–319
Huang PY, Ruiz-Vargas CS, van der Zande AM, Whitney WS, Levendorf MP, Kevek JW, Garg S, Alden JS, Hustedt CJ, Zhu Y, Park J, McEuen PL, Muller DA. Nature, 2011, 469: 389–392
Singh R, Kroll P. J Phys: Condens Matter, 2009, 21: 196002
Kotakoski J, Meyer JC, Kurasch S, Santos-Cottin D, Kaiser U, Krasheninnikov AV. Phys Rev B, 2011, 83: 245420
Robertson AW, Allen CS, Wu YA, He K, Olivier J, Neethling J, Kirkland AI, Warner JH. Nat Commun, 2012, 3: 1144
Vogel E, Markowitz G, Schmalstieg L, Itô S, Breuckmann R, Roth WR. Angew Chem Int Ed, 1984, 23: 719–720
Zhu J, Huang Y, Mei W, Zhao C, Zhang C, Zhang J, Amiinu IS, Mu S. Angew Chem Int Ed, 2019, 58: 3859–3864
Liu J, Osella S, Ma J, Berger R, Beljonne D, Schollmeyer D, Feng X, Müllen K. J Am Chem Soc, 2016, 138: 8364–8367
Mishra S, Lohr TG, Pignedoli CA, Liu J, Berger R, Urgel JI, Müllen K, Feng X, Ruffieux P, Fasel R. ACS Nano, 2018, 12: 11917–11927
Yamamoto K, Harada T, Nakazaki M, Naka T, Kai Y, Harada S, Kasai N. J Am Chem Soc, 1983, 105: 7171–7172
Fernández-García JM, Evans PJ, Medina Rivero S, Fernández I, García-Fresnadillo D, Perles J, Casado J, Martin N. J Am Chem Soc, 2018, 140: 17188–17196
Tang C, Wang HF, Chen X, Li BQ, Hou TZ, Zhang B, Zhang Q, Titirici MM, Wei F. Adv Mater, 2016, 28: 6845–6851
Liu M, Liu M, She L, Zha Z, Pan J, Li S, Li T, He Y, Cai Z, Wang J, Zheng Y, Qiu X, Zhong D. Nat Commun, 2017, 8: 14924
Beser U, Kastler M, Maghsoumi A, Wagner M, Castiglioni C, Tommasini M, Narita A, Feng X, Müllen K. J Am Chem Soc, 2016, 138: 4322–4325
Bieri M, Treier M, Cai J, Aït-Mansour K, Ruffieux P, Gröning O, Gröning P, Kastler M, Rieger R, Feng X, Müllen K, Fasel R. Chem Commun, 2009, 58: 6919
Moreno C, Vilas-Varela M, Kretz B, Garcia-Lekue A, Costache MV, Paradinas M, Panighel M, Ceballos G, Valenzuela SO, Peña D, Mugarza A. Science, 2018, 360: 199–203
Merino-Díez N, Garcia-Lekue A, Carbonell-Sanromà E, Li J, Corso M, Colazzo L, Sedona F, Sánchez-Portal D, Pascual JI, de Oteyza DG. ACS Nano, 2017, 11: 11661–11668
Draper SM, Gregg DJ, Schofield ER, Browne WR, Duati M, Vos JG, Passaniti P. J Am Chem Soc, 2004, 126: 8694–8701
Wijesinghe LP, Lankage BS, Maille GMÓ, Perera SD, Nolan D, Wang L, Draper SM. Chem Commun, 2014, 50: 10637–10640
Bronner C, Stremlau S, Gille M, Brauße F, Haase A, Hecht S, Tegeder P. Angew Chem Int Ed, 2013, 52: 4422–4425
Zhang Y, Zhang Y, Li G, Lu J, Lin X, Du S, Berger R, Feng X, Müllen K, Gao HJ. Appl Phys Lett, 2014, 105: 023101
Cai J, Pignedoli CA, Talirz L, Ruffieux P, Söde H, Liang L, Meunier V, Berger R, Li R, Feng X, Müllen K, Fasel R. Nat Nanotech, 2014, 9: 896–900
Wang XY, Richter M, He Y, Björk J, Riss A, Rajesh R, Garnica M, Hennersdorf F, Weigand JJ, Narita A, Berger R, Feng X, Auwärter W, Barth JV, Palma CA, Müllen K. Nat Commun, 2017, 8: 1948
Berger R, Giannakopoulos A, Ravat P, Wagner M, Beljonne D, Feng X, Müllen K. Angew Chem Int Ed, 2014, 53: 10520–10524
Wang T, Chen ZX, Chen YG, Yang LJ, Yang XD, Ye JY, Xia HP, Zhou ZY, Sun SG. ACS Energy Lett, 2018, 3: 986–991
Takase M, Narita T, Fujita W, Asano MS, Nishinaga T, Benten H, Yoza K, Müllen K. J Am Chem Soc, 2013, 135: 8031–8040
Oki K, Takase M, Mori S, Shiotari A, Sugimoto Y, Ohara K, Okujima T, Uno H. J Am Chem Soc, 2018, 140: 10430–10434
Żyla-Karwowska M, Zhylitskaya H, Cybińska J, Lis T, Chmielewski PJ, Stepieh M. Angew Chem Int Ed, 2016, 55: 14658–14662
Ito Y, Christodoulou C, Nardi MV, Koch N, Kläui M, Sachdev H, Müllen K. J Am Chem Soc, 2015, 137: 7678–7685
Błoński P, Tuček J, Sofer Z, Mazánek V, Petr M, Pumera M, Otyepka M, Zbořil R. J Am Chem Soc, 2017, 139: 3171–3180
Tang YB, Yin LC, Yang Y, Bo XH, Cao YL, Wang HE, Zhang WJ, Bello I, Lee ST, Cheng HM, Lee CS. ACS Nano, 2012, 6: 1970–1978
Han J, Zhang LL, Lee S, Oh J, Lee KS, Potts JR, Ji J, Zhao X, Ruoff RS, Park S. ACS Nano, 2013, 7: 19–26
Lv R, Chen G, Li Q, McCreary A, Botello-Méndez A, Morozov SV, Liang L, Declerck X, Perea-López N, Cullen DA, Feng S, Elias AL, Cruz-Silva R, Fujisawa K, Endo M, Kang F, Charlier JC, Meunier V, Pan M, Harutyunyan AR, Novoselov KS, Terrones M. Proc Natl Acad Sci USA, 2015, 112: 14527–14532
Osumi S, Saito S, Dou C, Matsuo K, Kume K, Yoshikawa H, Awaga K, Yamaguchi S. Chem Sci, 2016, 7: 219–227
Cloke RR, Marangoni T, Nguyen GD, Joshi T, Rizzo DJ, Bronner C, Cao T, Louie SG, Crommie MF, Fischer FR. J Am Chem Soc, 2015, 137: 8872–8875
Ci L, Song L, Jin C, Jariwala D, Wu D, Li Y, Srivastava A, Wang ZF, Storr K, Balicas L, Liu F, Ajayan PM. Nat Mater, 2010, 9: 430–435
Zhong Z, Wang XY, Zhuang FD, Ai N, Wang J, Wang JY, Pei J, Peng J, Cao Y. J Mater Chem A, 2016, 4: 15420–15425
Matsui K, Oda S, Yoshiura K, Nakajima K, Yasuda N, Hatakeyama T. J Am Chem Soc, 2018, 140: 1195–1198
Kawai S, Nakatsuka S, Hatakeyama T, Pawlak R, Meier T, Tracey J, Meyer E, Foster AS. Sci Adv, 2018, 4: eaar7181
Krieg M, Reicherter F, Haiss P, Ströbele M, Eichele K, Treanor MJ, Schaub R, Bettinger HF. Angew Chem Int Ed, 2015, 54: 8284–8286