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首页> 外文期刊>Journal of Applied Electrochemistry >Electrochemical performance of mechanically treated SnO2 powders for OER in acid solution
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Electrochemical performance of mechanically treated SnO2 powders for OER in acid solution

机译:机械处理的SnO 2 粉末在酸性溶液中对OER的电化学性能

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摘要

Commercial tin dioxide powders have been subjected to mechanical treatment in order to modify their microstructure. Processed powders were then used to assembly thin film electrodes which worked as anodes in a three electrode cell to drive the oxygen evolution reaction from acid solution. Cyclic voltammetry and polarization experiments were carried out together with electrochemical impedance spectroscopy to highlight the effects of milling on the catalytic performance. The findings suggest that the mechanical processing is capable of generating a considerable amount of lattice defects. The grain boundary extension as well as the content of structural disorder increase with the processing time. The increase in both the reactive site density and extent of structural disorder results in an enhanced chemical reactivity of the assembled electrodes.
机译:商业二氧化锡粉末已经过机械处理,以改变其微观结构。然后将加工过的粉末用于组装薄膜电极,该薄膜电极在三电极电池中充当阳极,以驱动氧气从酸性溶液中放出反应。循环伏安法和极化实验与电化学阻抗谱一起进行,以突出研磨对催化性能的影响。这些发现表明,机械加工能够产生大量的晶格缺陷。随着加工时间的延长,晶界延伸以及结构无序的含量增加。反应位点密度和结构紊乱程度的增加导致组装电极的化学反应性增强。

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