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Effect of Morphology on the Response of Polyaniline-based Conductometric Gas Sensors: Nanofibers vs. Thin Films

机译:形态对基于聚苯胺的电导率气体传感器响应的影响:纳米纤维与薄膜

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Mixtures of methanol with increasing fractions of formic acid were used to progressively transform the morphology of polyaniline starting from nanofibers to compact conventional films. It was demonstrated that the methanol/formic acid mixture could be used as a viable solvent system for nanostructured polyaniline to achieve sufficient processability while maintaining its microstructure. The effects of morphology on the response of polyaniline-based conductometric sensors to neutral gas molecules were also examined. Although the nanofiber films demonstrated faster responses, they exhibited lower sensitivity than conventional thin films. Creating high surface area nanofibril structures in polyaniline film does not appear to effectively enhance sensor sensitivity due to the relatively open structure inherent to many polymeric materials and the adverse contribution from the interfibrillar contact resistance associated with nanofiber films
机译:甲醇与甲酸含量增加的混合物用于逐步将聚苯胺的形态从纳米纤维转变为致密的常规薄膜。已证明甲醇/甲酸混合物可用作纳米结构聚苯胺的可行溶剂体系,以在保持其微结构的同时获得足够的加工性能。还检查了形态对基于聚苯胺的电导传感器对中性气体分子的响应的影响。尽管纳米纤维膜表现出更快的响应,但是它们显示出比常规薄膜低的灵敏度。由于许多聚合物材料固有的相对开放结构以及与纳米纤维膜相关的原纤维间接触电阻的不利影响,在聚苯胺膜中创建高表面积的纳米原纤维结构似乎并未有效增强传感器的灵敏度。

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