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掺杂/脱掺杂诱导的聚苯胺织物浸润性开关
引用本文:金俊平,李昕,张德权,赵莉.掺杂/脱掺杂诱导的聚苯胺织物浸润性开关[J].高分子学报,2010,0(2):192-198.
作者姓名:金俊平  李昕  张德权  赵莉
作者单位:北京服装学院材料科学与工程学院服,装材料研究开发与评价北京市重点实验室,北京,100029
基金项目:北京市科技新星计划项目(项目号2007B010)资助
摘    要:以三氟乙酸(TFA)作为掺杂剂,三氯化铁为氧化剂,采用原位化学氧化法制得了具有超疏水性能的聚苯胺/棉布复合导电织物(PANI/CCT),所得织物在外界酸度诱导下发生掺杂/脱掺杂反应而导致其由导电态向绝缘态的转变,从而实现超疏水到超亲水的可逆、快速变化.研究结果证实上述的超疏水/超亲水可逆的变化来自聚苯胺与纤维的微/纳米结构和TFA的低表面自由能的协同效应.

关 键 词:聚苯胺  导电织物  浸润性开关  掺杂/脱掺杂
收稿时间:2009-02-16

DOPING/DEDOPING PROCESS INDUCED WETTABILITY SWITCHING OF POLYANILINE-COATED CONDUCTIVE TEXTILE
JIN Junping,LI Xin,ZHANG Dequan,ZHAO Li.DOPING/DEDOPING PROCESS INDUCED WETTABILITY SWITCHING OF POLYANILINE-COATED CONDUCTIVE TEXTILE[J].Acta Polymerica Sinica,2010,0(2):192-198.
Authors:JIN Junping  LI Xin  ZHANG Dequan  ZHAO Li
Institution:Beijing Key Laboratory of Clothing Materials R&D and Assessment;Beijing Institute of Fashion Technology;Beijing 100029
Abstract:Polyaniline-coated conductive cotton textile(PANI/CCT)with superhydrophobic function was prepared via an in situ polymerization of aniline in the presence of trifluoroacetic acid(TFA)as the dopant and FeCl_3,as the oxidant.The SEM results present that the PANI nano-particles with diameter of about 200 nm evenly spread over on the surface of cotton fabrics with diameter of 10~20 μm.The structure characterizations further indicate that the cotton cellulose has certain doping function to the PANI,and there is a stronger chemical combination formed between them in the process of in situ polymerization than that in common coating.The contact angle of the PANI/CCT prepared atTFA]/ANI]=0.34 is found as high as 160.5°.It is proposed that the supper-hydrophobic function of the PANI/CCT results from synergetic effect of coexistence of micro/nanostructures with a low surface energy of TFA.Moreover,wettability of the PANI/CCT is reversibly varied from super-hydrophobic to super-hydrophilic induced by a doping with TFA and dedoping with ammonia gas,exposing a promising property for preparing acidity-controlled wettability switching.
Keywords:Polyaniline  Conductive textile  Wettability switching  Doping/dedoping process  
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