Fundamental aspects of antimony thin film electrodes for pH measurement.

Biotelemetry Pub Date : 1977-01-01
T Shigemitsu, G Matsumoto
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Abstract

This report concerns the investigation of the sensitivity, temperature dependence, accuracy, and the standard electrode potential EO of an antimony thin film pH electrode which was prepared with electron beam evaporation techniques. The air-formed oxide film on antimony thin film electrodes has been proved by both the cathodic reduction method and electron spectroscopy for chemical analysis (ESCA). The antimony thin film electrode responded rapidly to pH changes and its sensitivity was slightly changed depending on the buffer composition. The accuracy of this electrode was compared with that of the glass electrode. Temperature had some influence on the function of this electrode. The standard electrode potential of this electrode was discussed together with that of other forms of antimony electrodes. The structure and thickness of the surface oxide on antimony thin film electrodes was confirmed by cathodic reduction and ESCA. It was clear that the surface oxide governs the electrode reactions. Possible applications of the antimony thin film electrode are discussed stating some limitations in the use.

用于pH测量的锑薄膜电极的基本方面。
本文研究了用电子束蒸发技术制备的锑薄膜pH电极的灵敏度、温度依赖性、准确度和标准电极电位EO。用阴极还原法和电子能谱法(ESCA)证实了锑薄膜电极上存在气相氧化膜。锑薄膜电极对pH值变化响应迅速,其灵敏度随缓冲液组成的不同而略有变化。并与玻璃电极的精度进行了比较。温度对电极的性能有一定的影响。并与其他形式的锑电极的标准电极电位进行了讨论。通过阴极还原和ESCA对锑薄膜电极表面氧化物的结构和厚度进行了验证。很明显,表面氧化物支配着电极反应。讨论了锑薄膜电极的可能应用,并指出了使用中的一些限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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