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热处理对作为pH传感器的不锈钢电极pH敏感性的影响。

Effect of heat-treatment on the pH sensitivity of stainless-steel electrodes as pH sensors.

作者信息

Hashimoto Tadanori, Kitabayashi Hiroki, Ito Kenta, Nasu Hiroyuki, Ishihara Atsushi, Nishio Yuji

机构信息

Division of Chemistry for Materials, Graduate School of Engineering, Mie University, 1577 Kurimamachiya-Cho, Tsu, Mie, 514-8507, Japan.

HORIBA Advanced Techno, Co., Ltd., 2 Miyanohigasi, Kisshoin, Minami-Ku, Kyoto, 601-8551, Japan.

出版信息

Heliyon. 2019 Mar 28;5(3):e01239. doi: 10.1016/j.heliyon.2019.e01239. eCollection 2019 Mar.

Abstract

Effect of heat-treatment on the pH sensitivity of uncoated stainless-steel electrodes was investigated to comprehend the pH sensitivity of metal-oxide coated stainless-steel electrodes as novel pH sensors. The pH sensitivity of stainless-steel electrodes as-received and heat-treated at 500 °C, 600 °C and 700 °C for 24 h were 91 %, 94 %, 102 % and 91 %, respectively. The pH sensitivity tended to increase with increasing heat-treatment time at a given temperature. Thus, the most suitable heat-treatment condition for the stainless-steel electrodes was 600 °C for 24 h. The austenite phase (fcc) was the main phase on the surface of the heat-treated stainless-steel electrodes. Unexpectedly, the change in the martensite phase (bcc) as the second phase with heat-treatment temperature was similar to the pH sensitivity, with the martensite phase affecting the pH sensitivity. Therefore, it appeared that the pH sensitivity of the metal-oxide coated stainless-steel electrodes was affected by the underlying stainless-steel as well as the outer metal-oxide film coating. A prototype stainless-steel tube electrode was used as a working electrode for demonstrating the depth profiling of pH. The stainless-steel tube electrode showed good performance for measuring pH depth profiles compared to commercially available glass electrodes.

摘要

研究了热处理对未涂层不锈钢电极pH敏感性的影响,以了解作为新型pH传感器的金属氧化物涂层不锈钢电极的pH敏感性。原样的不锈钢电极以及在500℃、600℃和700℃下热处理24小时后的不锈钢电极的pH敏感性分别为91%、94%、102%和91%。在给定温度下,pH敏感性倾向于随着热处理时间的增加而增加。因此,不锈钢电极最合适的热处理条件是600℃处理24小时。奥氏体相(面心立方)是热处理后的不锈钢电极表面的主要相。出乎意料的是,作为第二相的马氏体相(体心立方)随热处理温度的变化与pH敏感性相似,马氏体相对pH敏感性有影响。因此,似乎金属氧化物涂层不锈钢电极的pH敏感性受底层不锈钢以及外部金属氧化物薄膜涂层的影响。使用原型不锈钢管电极作为工作电极来演示pH的深度剖析。与市售玻璃电极相比,不锈钢管电极在测量pH深度剖析方面表现出良好的性能。

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