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Response Behaviour of a Hydrogen Sensor Based on Ionic Conducting Polymer-metal Interfaces Prepared by the Chemical Reduction Method

机译:化学还原法制备的基于离子导电聚合物-金属界面的氢传感器的响应行为

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摘要

A solid-state amperometric hydrogen sensor based on a protonated Nafion membrane and catalytic active electrode operating at room temperature was fabricated and tested. Ionic conducting polymer-metal electrode interfaces were prepared chemically by using the impregnation-reduction method. The polymer membrane was impregnated with tetra-ammine platinum chloride hydrate and the metal ions were subsequently reduced by using either sodium tetrahydroborate or potassium tetrahydroborate. The hydrogen sensing characteristics with air as reference gas is reported. The sensors were capable of detecting hydrogen concentrations from 10 ppm to 10% in nitrogen. The response time was in the range of 10-30 s and a stable linear current output was observed. The thin Pt films were characterized by XRD, Infrared Spectroscopy, Optical Microscopy, Atomic Force Microscopy, Scanning Electron Microscopy and EDAX.
机译:制作并测试了基于质子化的Nafion膜和在室温下工作的催化活性电极的固态安培氢传感器。采用浸渍-还原法化学制备了离子导电聚合物-金属电极界面。用四氨合氯化铂水合物浸渍聚合物膜,然后通过使用四氢硼酸钠或四氢硼酸钾还原金属离子。报告了以空气作为参考气体的氢感测特性。传感器能够检测氮气中10 ppm到10%的氢浓度。响应时间在10-30 s范围内,并且观察到稳定的线性电流输出。通过X射线衍射,红外光谱,光学显微镜,原子力显微镜,扫描电子显微镜和EDAX对Pt薄膜进行了表征。

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