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Electrically conductive polymeric materials with high stretchability and excellent elasticity by a surface coating method

机译:通过表面涂覆法具有高拉伸性和优异弹性的导电聚合物材料

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摘要

Electrically conductive polymer films with high stretchability and excellent elasticity were simply fabricated by coating a conductive layer on the surface of an elastomer film. The material used for the conductive layer was a high-shear processed poly[styrene-b-(ethylene-co-butylene)-b-styrene] triblock copolymer (SEBS)/multiwalled carbon nanotubes (MWCNTs) nanocomposite with 20 wt.-% MWCNTs loading. The nanocomposites were first dissolved in toluene to form a stable solution and then were coated onto the SEBS film by spin coating. The alignment of MWCNTs in the coated layer and the interface between the base film and the coated layer were investigated. It was found that almost all the MWCNTs are aligned parallel to the base film and that there is good adhesion between the two layers. The fabricated films show high electrical conductivity and almost same stretchability and elasticity as the base film. Moreover, the films exhibit extremely high electrical conductive retention after applying high strain.
机译:通过在弹性体膜的表面上涂覆导电层,可以简单地制造具有高拉伸性和优异的弹性的导电聚合物膜。用于导电层的材料是具有20 wt .-%的高剪切加工的聚[苯乙烯-b-(乙烯-丁烯)-b-苯乙烯]三嵌段共聚物(SEBS)/多壁碳纳米管(MWCNTs)纳米复合材料MWCNTs加载。首先将纳米复合材料溶解在甲苯中以形成稳定的溶液,然后通过旋涂将其涂覆在SEBS膜上。研究了涂层中MWCNT的排列以及基膜与涂层之间的界面。发现几乎所有的MWCNT都平行于基膜排列,并且两层之间具有良好的粘合性。制成的薄膜显示出高导电率,几乎与基膜具有相同的拉伸性和弹性。而且,在施加高应变之后,膜表现出极高的导电保持性。

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