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综述了近年来聚乳酸应用于导电高分子材料的研究进展,概述了聚乳酸导电高分子复合材料的种类、制备方法及其工艺条件、导电机理,重点分析了导电填料的加入对聚乳酸性质的影响并介绍了所形成复合材料的特性,展望了聚乳酸导电高分子复合材料的应用前景.

参考文献

[1] Sajjad Saeidlou;Michel A. Huneault;Hongbo Li .Poly(lactic acid) crystallization[J].Progress in Polymer Science,2012(12):1657-1677.
[2] Bohayra Mortazavi;Fatima Hassonna;Ahdelghani Laachachi et al.Experimental and multiscale modeling of thermal conductivity and elastic properties of PLA/expanded graphite polymer nanocomposites[J].Thermochimica Acta,2013,552(20):106.
[3] Kumar, B.;Castro, M.;Feller, J.F. .Poly(lactic acid)-multi-wall carbon nanotube conductive biopolymer nanocomposite vapour sensors[J].Sensors and Actuators, B. Chemical,2012(1):621-628.
[4] 李轲,何茜婵,代坤,郑国强,王波,刘春太,陈静波,申长雨.以聚乳酸为基体的导电高分子复合材料研究进展[J].现代塑料加工应用,2012(03):57-60.
[5] 付东升,张康助,张强.导电高分子材料研究进展[J].现代塑料加工应用,2004(01):55-59.
[6] 邬海涛,于婷,朱庆三,焦自学,危岩,章培标,陈学思.电活性可生物降解纳米复合材料PAP/op-HA/PLGA的制备及成骨活性[J].高等学校化学学报,2011(05):1181-1187.
[7] Wan-Ying Lin;Yeng-Fong Shih;Ching-Hsuan Lin;Chuan-Chen Lee;Yi-Hsiuan Yu .The preparation of multi-walled carbon nanotube/poly(lactic acid) composites with excellent conductivity[J].Journal of the Taiwan Institute of Chemical Engineers,2013(3):489-496.
[8] Chin-San Wu;Hsin-Tzu Liao .Study on the preparation and characterization of biodegradable polylactide/multi-walled carbon nanotubes nanocomposites[J].Polymer: The International Journal for the Science and Technology of Polymers,2007(15):4449-4458.
[9] Li Yonghui;Chen Caihong;Li Jun et al.Synthesis and characterizeation of bionanocomposites of poly(lactic acid) and TiO2 nanowires by in situ polymerization[J].Polymer,2011,52(11):2367.
[10] 陈利,盛春英.PLA/CNTs复合材料研究进展[J].塑料科技,2010(12):100-102.
[11] 徐海星,闫玉华,李世普.聚吡咯/聚乳酸多孔复合导电材料的制备与表征[J].中南大学学报(自然科学版),2010(04):1321-1326.
[12] 丁新艳,邵路,白永平,孟令辉,马军.聚乳酸复合材料研究进展[J].世界科技研究与发展,2009(03):409-413.
[13] Zhou, H.;Nabiyouni, M.;Lin, B.;Bhaduri, S.B. .Fabrication of novel poly(lactic acid)/amorphous magnesium phosphate bionanocomposite fibers for tissue engineering applications via electrospinning[J].Materials science & engineering, C. Biomimetic and supramolecular systems,2013(4):2302-2310.
[14] Lin Li;Raed Hashaikeh;Hassan A Arafat .Development of eco-efficient micro-porous membranes via electrospinningand annealing of poly (lactic acid)[J].Journal of Membrane Science,2013,436(01):57.
[15] Petra Poetschke;Timo Andres;Tobias Villmow;Sven Pegel;Harald Bruenig;Kazufumi Kobashi;Dieter Fischer;Liane Haeussler .Liquid sensing properties of fibres prepared by melt spinning from poly(lactic acid) containing multi-walled carbon nanotubes[J].Composites science and technology,2010(2):343.
[16] Prasanth Raghavan;Du-Hyun Lim;Jou-Hyeon Ahn;Changwoon Nah;David C. Sherrington;Ho-Suk Ryu;Hyo-Jun Ahn .Electrospun polymer nanofibers: The booming cutting edge technology[J].Reactive & functional polymers,2012(12):915-930.
[17] 王安之,吕满庚.碳纳米管/高分子复合导电材料的研究进展[J].高分子通报,2006(05):65-70.
[18] Hun-Sik Kim;Ha Il Kwon;Soon-Min Kwon;Young Soo Yun;Jin-San Yoon;Hyoung-Joon Jin .Electrical and Mechanical Properties of Poly(L-lactide)/Carbon Nanotubes/Clay Nanocomposites[J].Journal of nanoscience and nanotechnology,2010(5):3576-3580.
[19] Kyriaki Kalaitzidou;Hiroyuki Fukushima;Lawrence T Drzal .A route for polymer nanocomposites with engineered electrical conductivity and percolation threshold[J].Materials,2010,3(02):1089.
[20] Hideto Tsuji;Yoshio Kawashima;Hirofumi Takikawa .Poly(L-lactide)/nano-structured carbon composites: Conductivity, thermal properties, crystallization, and biodegradation[J].Polymer: The International Journal for the Science and Technology of Polymers,2007(14):4213-4225.
[21] Jin Tae Yoon;Sang Cheol Lee;Young Gyu Jeong .Effects of grafted chain length on mechanical and electrical properties of nanocomposites containing polylactide-grafted carbon nanotubes[J].Composites science and technology,2010(5):p.776.
[22] Massimiliano Tait;Alessandro Pegoretti;Andrea Dorigato .The effect of filler type and content and the manufacturing process on the performance of multifunctional carbon/poly-lactide composites[J].Carbon: An International Journal Sponsored by the American Carbon Society,2011(13):4280-4290.
[23] Z. Antar;J.F. Feller;H. Noeel;P. Glouannec;K. Elleuch .Thermoelectric behaviour of melt processed carbon nanotube/graphite/poly(lactic acid) conductive biopolymer nanocomposites (CPC)[J].Materials Letters,2012(1):210-214.
[24] Agueda Sonseca;Laura Peponi;Oscar Sahuquillo et al.Electrospirming of biodegradable polylactide/hydroxyl apatite nanofibers:Study on the morphology,crystallinity structure and thermal stability[J].Polymer Degradation and Stability,2012,97(10):2052.
[25] Sang Ho Park;Seung Goo Lee;Seong Hun Kim .Isothermal crystallization behavior and mechanical properties of polylactide/carbon nanotube nanocomposites[J].Composites, Part A. Applied science and manufacturing,2013(3):11-18.
[26] Zhang D H;Kandadai M A .Cech L Poly(L-lactide) (PLLA) /multi-walled carbon nanotubes (MWCNTs) composite:Characterization and biocompatibility evaluation[J].Journal of Physical Chemistry B,2006,110(26):12910.
[27] Wang Ning;Zhang Xingxiang;Yu Jiugao .Partially miscible poly(lactic acid)- blend-poly(propylene carbonate) filled with carbon black as conductive polymer composite[J].Polymer international,2008(9):1027-1035.
[28] Gorrasi, G.;Sorrentino, A. .Photo-oxidative stabilization of carbon nanotubes on polylactic acid[J].Polymer Degradation and Stability,2013(5):963-971.
[29] Paula Gonzales Seligra;Federico Nuevo;Melisa Lamanna;Lucia Fama .Covalent grafting of carbon nanotubes to PLA in order to improve compatibility[J].Composites, Part B. Engineering,2013(Mar.):61-68.
[30] Chen,M.-C.;Sun,Y.-C.;Chen,Y.-H. .Electrically conductive nanofibers with highly oriented structures and their potential application in skeletal muscle tissue engineering[J].Acta biomaterialia,2013(3):5562-5572.
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