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化学进展  2012 

静电纺丝法在制备改性醋酸纤维素中的应用

, PP. 2359-2366

Keywords: 静电纺丝,醋酸纤维素,纳米纤维,改性

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Abstract:

纤维素是一种天然存在于有机物或植物中储量巨大的可再生资源。醋酸纤维素是在催化剂的作用下,将纤维素的羟基酯化而得到的一种热塑性树脂。由于其具有稳定,易于加工,不易燃烧,生物可降解性等特点,常用来替代天然纤维素作为静电纺丝的原料。静电纺丝技术作为目前制备纳米纤维材料的一种简单有效的方法,近些年来一直备受关注。本文系统介绍了以醋酸纤维素为静电纺丝的基体材料,通过添加纳米粒子、聚合物溶液、表面改性、同轴电纺等物理改性方法以及再生纤维处理和硝化反应等化学改性方法制备改性醋酸纤维素纤维,讨论了改性后的新材料结构和性能等多方面的变化。综述了近几年来国内外关于以静电纺丝法制备改性醋酸纤维素纤维的研究进展以及其在生物医药、组织工程支架、过滤膜以及功能性织物等方面的应用前景。

References

[1]  Schiffman J D, Schauer C L. Polymer Reviews, 2008, 48: 317-352
[2]  Hardick O, Stevens B, Bracewell D G. Journal of Materials Science, 2011, 46: 3890-3898
[3]  Haas D, Heinrich S, Greil P. Journal of Materials Science, 2010, 45: 1299-1306
[4]  Chen C Z, Wang L G, Huang Y. Applied Energy, 2011, 88: 3133-3139
[5]  Son W K, Youk J H, Park W H. Carbohydrate Polymers, 2006, 65: 430-434
[6]  Tsioptsias C, Sakellariou K G, Tsivintzelis I, Papadopoulou L, Panayiotou C. Carbohydrate Polymers, 2008, 81: 925-930
[7]  Tang C, Chen P, Liu H. Polymer Engineering and Science, 2008, 48: 1296-1303
[8]  Wu X M, Branford-White C J, Zhu L M, Chatterton N P, Yu D G. Journal of Materials Science: Materials in Medicine, 21: 2403-2411
[9]  Zhang L, Hsieh Y L. Journal of Nanoscience and Nanotechnology, 2008, 8: 4461-4469
[10]  Castillo-Ortega M M, Romero-Garcia J, Rodriguez F, Najera-Luna A, Herrera-Franco P J. Journal of Applied Polymer Science, 2011, 116: 1873-1878
[11]  Suwantong O, Ruktanonchai U, Supaphol P. Polymer, 2008, 49: 4239-4247
[12]  Taepaiboon P, Rungsardthong U, Supaphol P. European Journal of Pharmaceutics and Biopharmaceutics, 2007, 67: 387-397
[13]  Zhou W T, He J X, Cui S Z, Gao W D. Advanced Materials Reasearch, 2011, 148/149: 1408-1412
[14]  Zhou W T, He J X, Du S, Cui S Z, Gao W D. Iranian Polymer Journal, 2011, 20: 389-397
[15]  Zhou W T, He J X, Cui S Z, Gao W D. Advanced Materials Reasearch, 2011, 148/149: 1431-1435
[16]  Baptist A C, Martins J I, Fortunato E, Martins R, Borges J P, Ferreira I. Biosensors & Bioelectronics, 2010, 26: 2742-2745
[17]  Liu L, He D, Wang G S, Yu S H. Langmuir, 2002, 27: 7199-7206
[18]  Tian Y, Wu M, Liu R G, Li Y X, Wang D Q, Tan J J, Wu R C, Huang Y. Carbohydrate Polymers, 2010, 83: 743-748
[19]  Tang C, Liu H. Composites Part A: Applied Science and Manufacturing, 2008, 39: 1638-1643
[20]  Ding B, Gong J, Kim J, Shiratori S. Nanotechnology, 2005, 16: 785-790
[21]  Ding B, Li C, Fujita S, Shiratori S. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2006, 284: 257-262
[22]  Deng H B, Zhou X, Wang X Y., Zhang C Y, Ding B, Zhang Q H, Du Y M. Carbohydrate Polymers, 2011, 80: 474-479
[23]  Ding B, Fujimoto K, Shiratori S. Thin Solid Films, 2005, 491: 23-28
[24]  Dixit V, Tewar I J, Obendorf S K. Archives of Environmental Contamination and Toxicology, 1999, 59: 417-423
[25]  Rodriguez K, Renneckar S, Gatenholm P. ACS Applied Materials & Interfaces, 2011, 3: 681-689
[26]  Liu S P, Tan L J, Hu W L, Li X Q, Chen Y M. Materials Letters, 2011, 64: 2427-2430
[27]  王月江(Wang Y J), 刘文(Liu W), 宋蓓(Song B). 黑龙江造纸(Heilongjiang Pulp & Paper), 2010, (3): 30-33
[28]  Herrera N V, Mathew A P, Wang L Y, Oksman K. Plastics Rubber and Composites, 2011, 40: 57-64
[29]  Christoforou T, Doumanidis C. Journal of Nanoscience and Nanotechnology, 2010, 10: 6226-6233
[30]  李增富(Li Z F). 吉林化工学院学报(Journal of Jilin Institute of Chemical Technology), 2008, 25: 19-22
[31]  Wang H, Qin X H, Cao J H. Advanced Materials Research, 2011, 175/176: 242-246
[32]  高永峰(Gao Y F), 袁金颖(Yuan J Y), 隋晓峰(Sui X F), 周密(Zhou M), 蔡志楠(Cai Z N). 化学进展(Progress in Chemistry), 2009, 21: 1553-1559
[33]  Celebioglu A, Uyar T. Materials Letters, 2010, 65: 2291-2294
[34]  Zhang L, Hsieh Y L. Carbohydrate Polymers, 2008, 71: 196-207
[35]  Pittarate C, Yoovidhya T, Srichumpuang W, Intasanta N, Wongsasulak S. Polymer Journal, 2011, 43: 978-986
[36]  Chen L, Bromberg L, Hatton T A, Rutledge G C. Polymer, 2008, 49: 1266-1275
[37]  Anitha S, Brabu B, Thiruvadigal D J, Gopalakrishnan C, Natarajan T S. Carbohydrate Polymers, 2012, 87: 1065-1072
[38]  Hendrick E, Frey M, Herz E, Wiesner U. Journal of Engineered Fibers and Fabrics, 2010, 5: 21-30
[39]  Li J, Kee C D, Vadahanambi S, Oh I K. Advanced Materials Research, 2011, 214: 359-363
[40]  Liao H Q, Wu Y Q, Wu M Y, Liu H Q. Polymer Composites, 2011, 32: 837-845
[41]  Yao L, Lee C, Kim J. Fibers and Polymers, 2003, 12: 197-206
[42]  Sun X B, Zhang L F, Cao Z B, Deng Y, Liu L, Fong H, Sun Y Y. ACS Applied Materials & Interfaces, 2010, 2: 952-956
[43]  Suwantong O, Opanasopit P, Ruktanonchal U, Supaphol P. Polymer, 2007, 48: 7546-7557
[44]  Suwantong O, Ruktanonchai U, Supaphol P. Journal of Biomedical Materials Research Part A, 2010, 94A: 1216-1225
[45]  Tungprapa S, Jangchud I, Supaphol P. Polymer, 2007, 48: 5030-5041
[46]  Zhou W T, He J X, Cui S Z, Gao W D. Fibers and Polymers, 2011, 12: 431-437
[47]  Wongsasulak S, Patapeejumruswong M, Weiss J, Supaphol P, Yoovidhya T. Journal of Food Engineering, 2011, 98: 370-376
[48]  Ding B, Li C, Hotta Y, Kim J, Kuwaki O, Shiratori S. Nanotechnology, 2006, 17: 4332-4339
[49]  Ritcharoen W, Supaphol P, Pavasant P. European Polymer Journal, 2008, 44: 3963-3968
[50]  Sundarrajan S, Ramakrishna S. Journal of Nanoscience and Nanotechnology, 2010, 10: 1139-1147
[51]  Lisunova M, Hildmann A, Hatting B, Datsyuk V, Reich S. Composites Science and Technology, 2010, 70: 1584-1588
[52]  Bedford N M, Steckl A J. ACS Applied Materials & Interfaces, 2009, 2: 2448-2455
[53]  Rubenstein D A, Venkitachalam S M, Zamfir D, Wang F, Lu H B, Frame M D, Yin W. Journal of Biomaterials Science-Polymer Edition, 2010, 21: 1713-1736
[54]  Ma Z W, Kotaki M, Ramakrishna S. Journal of Membrane Science, 2005, 265: 115-123
[55]  Davis B W, Niamnont N, Hare C D, Sukwattanasinitt M, Cheng Q A. ACS Applied Materials & Interfaces, 2010, 2: 1798-1803
[56]  Lu P, Hsieh Y L. ACS Applied Materials & Interfaces, 2010, 2: 2413-2420
[57]  Ma Z W, Seeram R. Journal of Membrane Science, 2008, 319: 23-28
[58]  Liu R L, Ye H Y, Xiong X P, Liu H Q. Materials Chemistry and Physics, 2011, 121: 432-439
[59]  Chen P C, Huang X J, Huang F, Ou Y, Chen M R, Xu Z K. Cellulose, 2011, 18: 1563-1571
[60]  Huang X J, Chen P C, Huang F, Ou Y, Chen M R, Xu Z K. Journal of Molecular Catalysis B-Enzymatic, 2011, 70: 95-100
[61]  Chen S L, Huang X J, Xu Z K. Cellulose, 2011, 18: 1295-1303
[62]  Li L L, Frey M. Polymer, 2010, 51: 3774-3783
[63]  于建香(Ding J X), 师奇松(Shi Q S), 张淑敏(Zhang S M), 顾凯(Gu K), 刘太奇(Liu T Q). 北京石油化工学院学报(Journal of Beijing Institute of Petro-Chemical Technology) 2004, 12: 31-33
[64]  Liang J H, Yang J X, Huang Y X, Liu H Q. Acta Chimica Sinica, 2010, 68: 1713-1718
[65]  Liu R L, Huang Y X, Xiao A H, Liu H Q. Journal of Alloys and Compounds, 2010, 503: 103-110

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