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The piezoresistive performance investigation of multifunctional genuine nanocomposites thin films

机译:多功能真正纳米复合薄膜的压阻性能研究。

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In this work, piezoresistive properties of thin films based on carbon nanomaterials dispersed in intrinsically conductive polymer were investigated. The high conductive multiwalled carbon nanotubes / graphene oxide and Poly (3,4-ethylenedioxythiophene) polymerized with poly (4-styrenesulfonate) (PEDOT:PSS) thin films were prepared and deposited on flexible polymer substrates (Kapton HN500, 125 μm) by solution drop casting. The influences of mixing ratio of MWCNT:GO to PEDOT:PSS and of the chemical reduction on the electromechanical thin film properties such as electrical conductivity and strain sensitivity were investigated. For the non-treated thin films, a negative resistance coefficient was observed for the applied strain force with low strain sensitivity around -1.9. This behavior was independent on the mixing ratio between the MWCNT:GO to PEDOT:PSS. However, and for the chemically reduced thin films, two strain regions were distinguished with sensitivity up to 92. In general, MWCNT:GO/ PEDOT:PSS films have potential as a high conductive, high strain sensitive material for advanced structural health monitoring and aerospace applications.
机译:在这项工作中,研究了基于分散在本征导电聚合物中的碳纳米材料的薄膜的压阻特性。制备高导电多壁碳纳米管/氧化石墨烯和与聚(4-苯乙烯磺酸盐)(PEDOT:PSS)薄膜聚合的聚(3,4-乙撑二氧噻吩)薄膜,并通过溶液沉积在柔性聚合物基板(Kapton HN500,125μm)上抛投。研究了MWCNT:GO与PEDOT:PSS的混合比例以及化学还原对机电薄膜性能如电导率和应变敏感性的影响。对于未处理的薄膜,在-1.9附近的低应变敏感性下观察到所施加的应变力为负电阻系数。此行为与MWCNT:GO与PEDOT:PSS之间的混合比例无关。但是,对于化学还原的薄膜,可以区分两个应变区域,其灵敏度最高可达92。总体而言,MWCNT:GO / PEDOT:PSS薄膜具有作为高导电性,高应变敏感性材料的潜力,可用于高级结构健康监测和航空航天应用程序。

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