β-cyclodextrin functionalized graphene oxide: an efficient and recyclable adsorbent for the removal of dye pollutants
Tóm tắt
Từ khóa
Tài liệu tham khảo
Noll K E. Adsorption Technology for Air and Water Pollution Control. CRC Press, 1991, 8–13
Martinez-Huitle C A, Ferro S. Electrochemical oxidation of organic pollutants for the wastewater treatment: Direct and indirect processes. Chemical Society Reviews, 2006, 35(12): 1324–1340
Aksu Z. Application of biosorption for the removal of organic pollutants: A review. Process Biochemistry, 2005, 40(3–4): 997–1026
Cheng H, Huang B, Wang P, Wang Z, Lou Z, Wang J, Qin X, Zhang X, Dai Y. In situ ion exchange synthesis of the novel Ag/AgBr/BiOBr hybrid with highly efficient decontamination of pollutants. Chemical Communications (Cambridge), 2011, 47(25): 7054–7056
Balandin A A, Ghosh S, Bao W, Calizo I, Teweldebrhan D, Miao F, Lau C N. Superior thermal conductivity of single-layer graphene. Nano Letters, 2008, 8(3): 902–907
Craciun M, Russo S, Yamamoto M, Tarucha S. Tuneable electronic properties in graphene. Nano Today, 2011, 6(1): 42–60
Frank I, Tanenbaum D M, van der Zande A M, McEuen P L. Mechanical properties of suspended graphene sheets. Journal of Vacuum Science & Technology B, Microelectronics and Nanometer Structures, 2007, 25(6): 2558–2561
Han Z, Kimouche A, Kalita D, Allain A, Arjmandi-Tash H, Reserbat-Plantey A, Marty L, Pairis S, Reita V, Bendiab N, Coraux J, Bouchiat V. Homogeneous optical and electronic properties of graphene due to the suppression of multilayer patches during CVD on copper foils. Advanced Functional Materials, 2013, 24(7): 964–970
Kyzas G Z, Deliyanni E A, Matis K A. Graphene oxide and its application as an adsorbent for wastewater treatment. Journal of Chemical Technology and Biotechnology (Oxford, Oxfordshire), 2014, 89(2): 196–205
Xu J, Lv H, Yang S T, Luo J. Preparation of graphene adsorbents and their applications in water purification. Reviews in Inorganic Chemistry, 2013, 33(2–3): 139–160
Fan L, Luo C, Li X, Lu F, Qiu H, Sun M. Fabrication of novel magnetic chitosan grafted with graphene oxide to enhance adsorption properties for methyl blue. Journal of Hazardous Materials, 2012, 215: 272–279
Fan L, Luo C, Sun M, Li X, Qiu H. Highly selective adsorption of lead ions by water-dispersible magnetic chitosan/graphene oxide composites. Colloids and Surfaces. B, Biointerfaces, 2013, 103: 523–529
Geng Z, Lin Y, Yu X, Shen Q, Ma L, Li Z, Pan N, Wang X. Highly efficient dye adsorption and removal: a functional hybrid of reduced graphene oxide-Fe3O4 nanoparticles as an easily regenerative adsorbent. Journal of Materials Chemistry, 2012, 22(8): 3527–3535
Szejtli J. Cyclodextrins and their inclusion complexes. Akadémiai Kiadó Budapest, 1982, 4–12
Bhattarai B, Muruganandham M, Suri R P S. Development of high efficiency silica coated β-cyclodextrin polymeric adsorbent for the removal of emerging contaminants of concern from water. Journal of Hazardous Materials, 2014, 273: 146–154
Mahlambi M M, Malefetse T J, Mamba B B, Krause R W. β-Cyclodextrin-ionic liquid polyurethanes for the removal of organic pollutants and heavy metals from water: Synthesis and characterization. Journal of Polymer Research, 2010, 17(4): 589–600
Mamba B, Krause R, Malefetse T J, Nxumalo E N. Monofunctionalized cyclodextrin polymers for the removal of organic pollutants from water. Environmental Chemistry Letters, 2007, 5(2): 79–84
Guo Y, Guo S, Li J, Wang E, Dong S. Cyclodextrin-graphene hybrid nanosheets as enhanced sensing platform for ultrasensitive determination of carbendazim. Talanta, 2011, 84(1): 60–64
Wu S, Lan X, Cui L, Zhang L, Tao S, Wang H, Han M, Liu Z, Meng C. Application of graphene for preconcentration and highly sensitive stripping voltammetric analysis of organophosphate pesticide. Analytica Chimica Acta, 2011, 699(2): 170–176
Chen M, Meng Y, Zhang W, Zhou J, Xie J, Diao G. β-Cyclodextrin polymer functionalized reduced-graphene oxide: Application for electrochemical determination imidacloprid. Electrochimica Acta, 2013, 108: 1–9
Badruddoza A, Tay A, Tan P Y, Hidajat K, Uddin M S. Carboxymethyl-β-cyclodextrin conjugated magnetic nanoparticles as nano-adsorbents for removal of copper ions: Synthesis and adsorption studies. Journal of Hazardous Materials, 2011, 185(2–3): 1177–1186
Fan L, Luo C, Sun M, Qiu H. Synthesis of graphene oxide decorated with magnetic cyclodextrin for fast chromium removal. Journal of Materials Chemistry, 2012, 22(47): 24577–24583
Li L, Fan L, Sun M, Qiu H, Li X, Duan H, Luo C. Adsorbent for chromium removal based on graphene oxide functionalized with magnetic cyclodextrin-chitosan. Colloids and Surfaces. B, Biointerfaces, 2013, 107: 76–83
Liu W, Li C. One-step synthesis of β-cyclodextrin functionalized graphene/Ag nanocomposite and its application in sensitive determination of 4-nitrophenol. Electroanalysis, 2013, 25(10): 2367–2376
Xu C, Wang J, Wan L, Lin J, Wang X. Microwave-assisted covalent modification of graphene nanosheets with hydroxypropyl-β-cyclodextrin and its electrochemical detection of phenolic organic pollutants. Journal of Materials Chemistry, 2011, 21(28): 10463–10471
Asouhidou D D, Triantafyllidis K S, Lazaridis N K, Matis K A. Adsorption of Remazol Red 3BS from aqueous solutions using APTES- and cyclodextrin-modified HMS-type mesoporous silicas. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2009, 346(1–3): 83–90
Ozmen E Y, Sirit A, Yilmaz M. A calix 4 arene oligomer and two beta-cyclodextrin polymers: Synthesis and sorption studies of azo dyes. Journal of Macromolecular Science, Part A: Pure and Applied Chemistry, 2007, 44(2): 167–173
Yilmaz E, Memon S, Yilmaz M. Removal of direct azo dyes and aromatic amines from aqueous solutions using two beta-cyclodextrin-based polymers. Journal of Hazardous Materials, 2010, 174(1–3): 592–597
Zhang X M, Peng C S, Xu G C. Synthesis of modified betacyclodextrin polymers and characterization of their fuchsin adsorption. Journal of Inclusion Phenomena and Macrocyclic Chemistry, 2012, 72(1–2): 165–171
Lerf A, He H Y, Forster M, Klinowski J. Structure of graphite oxide revisited. Journal of Physical Chemistry B, 1998, 102(23): 4477–4482
Stankovich S, Dikin D A, Piner R D, Kohlhaas K A, Kleinhammes A, Jia Y, Wu Y, Nguyen S B T, Ruoff R S. Synthesis of graphenebased nanosheets via chemical reduction of exfoliated graphite oxide. Carbon, 2007, 45(7): 1558–1565