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A thin-layer amperometric sensor for hydrogen sulfide: The use of microelectrodes to achieve a membrane-independent response for Clark-type sensors

机译:硫化氢的薄层安培传感器:使用微电极实现Clark型传感器的膜独立响应

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An electrochemical cell design of the Clark type including a thin layer of electrolyte in contact with a microelectrode has been successfully applied for the determination of sulfide utilizing its electrochemically initiated reaction nith aqueous diethyl-p-phenylenediamine. The analytical parameters obtained were independent of the membrane used to separate the inner chamber and the outside sulfide-containing solution. The independence arises since the thickness of the diffusion layer associated with the microelectrode is small and, in contrast to the conventional macroelectrode Clark electrode, does not impinge on the membrane. This provides an improvement in gas sensor design and development as it obviates the need for membrane calibration and should simplify the application of Clark cells for variable-temperature measurements. [References: 22]
机译:利用其电化学引发的反应在二乙基对苯二胺水溶液中的电化学反应,克拉克(Clark)型电化学电池设计已成功应用于含硫化物的测定,该薄层电解质与微电极接触。所获得的分析参数与用于分隔内部腔室和外部含硫化物的溶液的膜无关。由于与微电极相关的扩散层的厚度小,并且与常规的大电极克拉克电极相反,其不撞击在膜上,因此出现独立性。这消除了膜校准的需要,并简化了Clark温度传感器在可变温度测量中的应用,从而改善了气体传感器的设计和开发。 [参考:22]

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