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介孔硼硅酸盐微晶玻璃复合材料作为参比电极中熔块的评估。

Evaluation of mesoporous borosilicate glass-ceramic composites as frits in reference electrodes.

作者信息

Badr Ibrahim H A, Rafea Osama A S

机构信息

Chemistry Department, Faculty of Science, Ain-Shams University Cairo Egypt 11566

Chemistry Department, Faculty of Science, Galala University New Galala City 43511 Egypt.

出版信息

RSC Adv. 2022 Oct 12;12(45):28878-28885. doi: 10.1039/d2ra05315b. eCollection 2022 Oct 11.

Abstract

The development of new mesoporous frits for reference electrodes to overcome the limitations of cross-contamination and screening effect is essential for many electrochemical measurements. Available frit-based reference electrodes (, mesoporous, microporous) still suffer from cross-contamination and/or errors in electrochemical measurements. In this work, a mesoporous glass-ceramic composite is prepared to mitigate such limitations. Mesoporous glass-ceramic frits were prepared from low-cost materials (, borosilicate and kaolin) at relatively low temperatures (750-850 °C). The prepared glass-ceramic frits were characterized using scanning electron microscopy (SEM), impedance measurements, and nitrogen sorption isotherms. The developed mesoporous glass-ceramic composites are characterized by a high chemical resistance against corrosive materials and a low thermal expansion. Reference electrodes constructed with the developed mesoporous glass-ceramic frits exhibited a low flow rate of 0.002 ± 0.001 to 0.41 ± 0.06 μL h and high potential stability as well as very small potential drift of -2.4 ± 0.2 to -4.9 ± 0.2 μV h. Mesoporous glass-ceramic based reference electrodes exhibited average potential variations of 13 ± 3 mV over the concentration range of 1 mM to 0.1 M KCl. This indicates that mesoporous glass-ceramic frit-based reference electrodes exhibited a much lower flow rate compared to available microporous frit-based reference electrodes. Moreover, the developed mesoporous ceramic-based reference electrodes exhibited a 4-15-fold improvement in potential variations and a large improvement in potential stability in comparison with the reported mesoporous-frit-based reference electrodes.

摘要

开发新型介孔玻璃料用于参比电极以克服交叉污染和筛分效应的局限性,对于许多电化学测量至关重要。现有的基于玻璃料的参比电极(介孔、微孔)在电化学测量中仍存在交叉污染和/或误差。在这项工作中,制备了一种介孔玻璃陶瓷复合材料以减轻此类局限性。介孔玻璃陶瓷玻璃料由低成本材料(如硼硅酸盐和高岭土)在相对较低的温度(750 - 850°C)下制备而成。使用扫描电子显微镜(SEM)、阻抗测量和氮吸附等温线对制备的玻璃陶瓷玻璃料进行了表征。所开发的介孔玻璃陶瓷复合材料具有对腐蚀性材料的高化学抗性和低热膨胀性。用所开发的介孔玻璃陶瓷玻璃料构建的参比电极显示出0.002±0.001至0.41±0.06 μL/h的低流速、高电位稳定性以及-2.4±0.2至-4.9±0.2 μV/h的非常小的电位漂移。基于介孔玻璃陶瓷的参比电极在1 mM至0.1 M KCl的浓度范围内显示出13±3 mV的平均电位变化。这表明与现有的基于微孔玻璃料的参比电极相比,基于介孔玻璃陶瓷玻璃料的参比电极显示出低得多的流速。此外,与报道的基于介孔玻璃料的参比电极相比,所开发的基于介孔陶瓷的参比电极在电位变化方面提高了4 - 15倍,在电位稳定性方面有了很大提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/856b/9555014/f049211672ed/d2ra05315b-f1.jpg

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