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Dynamic Fluctuation in Heat Treatment Time Dependence of Activity and Reaction Kinetics of Active Centers in Fe/N/C Oxygen Reduction Reaction Catalyst

机译:活性中心的活性和反应动力学的动态波动在Fe/N/C氧还原反应催化剂中的活性中心的反应动力学

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摘要

We elucidate dynamic fluctuation of activity characterized by the existence of multiple local maxima or a significant inflection point in the growth rate of an Fe/N/C oxygen reduction reaction (ORR) catalyst, with this fluctuation depending on the heat treatment (HT) time used in the catalyst’s preparation. Since its HT time increased from 45 seconds to 10 hours at 750 ℃ HT, its activity exhibited a dynamic fluctuation and multiple local maxima, which are separated into two different timescales: several minutes and several hours. At 600℃HT,a significant inflection point appears around several tens of minutes instead of the multiple local maxima. These results contrast with the conventional idea of how activity depends on heat treatment time, i. e. an initial monotonic increase and then a plateau or monotonic decrease. It suggests that the best HT condition cannot be found by only investigating a narrow range of HT time or a course plot of HT time dependence of activity in general. Based on a simple reaction model, the origin of the dynamic fluctuation of activity depending on HT time is explained by the existence of multiple types of Fe-N active centers with individual formation and decomposition rate constants during HT. These results will contribute to a comprehensive understanding of how a Metal/N/C catalyst achieves its ORR activity through HT, which is essential for designing yet higher-performance catalysts from the viewpoint of the number of constitutive active centers.
机译:我们阐明了活性的动态波动,其特征是存在多个局部最大值或Fe/n/c氧还原反应(ORR)催化剂的生长速率的显着拐点,并取决于热处理(HT)时间的波动用于催化剂的准备。由于其HT时间从45秒增加到750 HT时的10小时,因此其活性表现出动态波动和多个局部最大值,分为两个不同的时间表:几分钟和几个小时。在600°HT时,出现了一个显着的拐点,大约几十分钟而不是多个局部最大值。这些结果与活动如何取决于热处理时间的常规想法相反。 e。最初的单调增加,然后平稳或单调减小。它表明,仅通过研究狭窄的HT时间范围或一般活动的HT时间依赖性范围,无法找到最佳的HT条件。基于一个简单的反应模型,通过在HT期间具有单个形成和分解速率常数的多种类型的FE-N活性中心的存在来解释活性动态波动的起源。这些结果将有助于全面了解金属/N/C催化剂如何通过HT实现其ORR活性,这对于从组成型活性中心数量的角度设计而设计但更高的性能催化剂至关重要。

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