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A surface renewable iridium oxide-glass composite hydrogen ion electrode

机译:表面可再生氧化铱玻璃复合氢离子电极

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A robust and surface renewable iridium oxide-based pH glass composite electrode was prepared by modifying glass matrix with iridium oxide particles. Fine glass powder coated with iridium oxide was prepared by pyrolyzing ammonium hexachloroiridate-coated glass powder under oxygen atmosphere. First the glass powder was molded into a disk, by using a press, then was sintered in high temperature, and was finally fabricated. The electrode showed linear response between pH 1 and 13 with close slopes to the theoretical value, -59.2 mV/pH. The electrode showed low hysteresis upon sudden changes of pH from 2 to 6, but in extreme conditions, from pH 13 to 1, it showed values near 16 mV. The electrode maintained the pH response for 36 days, without a significant slope drift, in various storage conditions - deionized water, a pH 7 buffer solution, 4 M KCl, and even in the air. Most of the cations and anions, except electrochemically active compounds or ions, did not interfere with the electrodes seriously. The electrode surface can be renewed reproducibly, by a simple grinding process whenever it becomes fouled or deactivated. The electrode matrix was durable and showed extended lifetime although it was ground repeatedly with 2000 grit SiC emery paper for surface renewal.
机译:通过用氧化铱颗粒改性玻璃基体,制备了一种坚固且表面可再生的基于氧化铱的pH玻璃复合电极。通过在氧气气氛下热解六氯铱酸盐铵涂覆的玻璃粉末来制备涂覆有氧化铱的细玻璃粉末。首先,通过使用压力机将玻璃粉末成型为圆盘,然后在高温下烧结,最后制成。电极在pH 1和13之间显示线性响应,与理论值-59.2 mV / pH的斜率接近。 pH值突然从2更改为6时,电极显示出低磁滞,但在极端条件下,pH从13更改为1,其显示的值接近16 mV。电极在各种存储条件下(去离子水,pH 7缓冲溶液,4 M KCl甚至在空气中)可维持36天的pH响应,且没有明显的斜率漂移。除电化学活性化合物或离子外,大多数阳离子和阴离子都不会严重干扰电极。每当电极表面结垢或失活时,都可以通过简单的研磨过程来可再生地更新电极表面。电极基体经2000粒度SiC砂纸反复磨削以更新表面,但经久耐用并具有延长的使用寿命。

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