首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Carbon-supported low-loading rhodium sulfide electrocatalysts for oxygen depolarized cathode applications
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Carbon-supported low-loading rhodium sulfide electrocatalysts for oxygen depolarized cathode applications

机译:碳载低负荷硫化铑铑电催化剂,用于氧去极化阴极应用

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摘要

Noble metal chalcogens are the preferred choice of electrocatalyst materials over pure metals and metal alloys in many industrial processes involving operation in highly corrosive environment. The depolarised electrolysis of hydrochloric acid represents one of such processes; in this case, rhodium sulfide is incorporated into gas diffusion electrode structure for use as oxygen-consuming cathode. An increased dispersion of the rhodium/sulfur compound is an evident goal to obtain highly active catalyst systems while maintaining similar activity. In studying the effect of RhxSy loading on carbon on oxygen reduction reaction activity, it is paramount to understand and optimize the structure sensitivity of the reaction. Doing so will not only aid in determining the optimal metal loading but more importantly will control the commercial viability of the electrocatalyst. In the present work, the RhxSy loading on Vulcan XC72-R was studied in terms of morphological characteristics and ORR activity. Physicochemical characterization suggests that the preparation methodology of such chalcogens plays a fundamental role in terms of chemical structure. ORR kinetics was addressed using a series of rotating disk electrode experiments in 1 M HCl electrolyte, in which the optimal RhxSy loading was found to be at 15 wt.%, a value two times lower with respect to the commercially available 30 wt.% material. Any higher dispersion results in no significant increase in the overall electrocatalytic performance. Based on the increased Rh utilization and enhanced activity found for the low-loading RhxSy/C samples, we report a significant development in terms of materials and material employment for the oxygen depolarized electrolysis of HCl.
机译:在涉及高腐蚀性环境的许多工业过程中,贵金属硫族元素是电催化剂材料优于纯金属和金属合金的首选材料。盐酸的去极化电解代表了这样的过程之一。在这种情况下,将硫化铑掺入气体扩散电极结构中以用作耗氧阴极。铑/硫化合物的分散度增加是获得高活性催化剂体系并保持相似活性的明显目标。在研究RhxSy负载量对碳的还原反应活性的影响时,了解和优化反应的结构敏感性至关重要。这样做不仅有助于确定最佳的金属负载量,而且更重要的是将控制电催化剂的商业可行性。在目前的工作中,根据形态特征和ORR活性研究了Vulcan XC72-R上的RhxSy负载。理化特征表明,这种硫属元素的制备方法在化学结构方面起着根本性的作用。使用一系列在1 M HCl电解质中的旋转圆盘电极实验解决了ORR动力学问题,其中发现最佳RhxSy负载量为15 wt。%,相对于市售30 wt。%的材料而言,该值低两倍。更高的分散度不会导致总体电催化性能显着提高。基于低负荷RhxSy / C样品的Rh利用率增加和活性增强,我们报告了HCl的氧去极化电解的材料和材料使用方面的重大进展。

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