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Simultaneous Detection of Electronic Structure Changes from Two Elements of a Bifunctional Catalyst Using Wavelength-Dispersive X-ray Emission Spectroscopy and in situ Electrochemistry

机译:波长色散X射线发射光谱和原位电化学同时检测双功能催化剂中两个元素的电子结构变化

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摘要

Multielectron catalytic reactions, such as water oxidation, nitrogen reduction, or hydrogen production in enzymes and inorganic catalysts often involve multimetallic clusters. In these systems, the reaction takes place between metals or metals and ligands to facilitate charge transfer, bond formation/breaking, substrate binding, and release of products. In this study, we present a method to detect X-ray emission signals from multiple elements simultaneously, which allows for the study of charge transfer and the sequential chemistry occurring between elements. Kβ X-ray emission spectroscopy (XES) probes charge and spin states of metals as well as their ligand environment. A wavelength-dispersive spectrometer based on the von Hamos geometry was used to disperse Kβ signals of multiple elements onto a position detector, enabling an XES spectrum to be measured in a single-shot mode. This overcomes the scanning needs of the scanning spectrometers, providing data free from temporal and normalization errors and therefore ideal to follow sequential chemistry at multiple sites. We have applied this method to study MnOx-based bifunctional electrocatalysts for the oxygen evolution reaction (OER) and the oxygen reduction reaction (ORR). In particular, we investigated the effects of adding a secondary element, Ni, to form MnNiOx and its impact on the chemical states and catalytic activity, by tracking the redox characteristics of each element upon sweeping the electrode potential. The detection scheme we describe here is general and can be applied to time-resolved studies of materials consisting of multiple elements, to follow the dynamics of catalytic and electron transfer reactions.
机译:多电子催化反应,例如酶和无机催化剂中的水氧化,氮还原或产氢,通常涉及多金属簇。在这些系统中,反应发生在金属或金属与配体之间,以促进电荷转移,键形成/断裂,底物结合和产物释放。在这项研究中,我们提出了一种同时检测来自多个元素的X射线发射信号的方法,该方法可用于研究电荷转移和元素之间发生的顺序化学反应。 KβX射线发射光谱(XES)探测金属的电荷和自旋状态以及其配体环境。使用基于von Hamos几何形状的波长色散光谱仪将多个元素的Kβ信号分散到位置检测器上,从而可以单次测量XES光谱。这克服了扫描光谱仪的扫描需求,提供了没有时间和归一化误差的数据,因此非常适合在多个位置遵循顺序化学反应。我们已经将该方法用于研究用于氧释放反应(OER)和氧还原反应(ORR)的MnOx基双功能电催化剂。特别地,我们通过在扫掠电极电位时跟踪每种元素的氧化还原特性,研究了添加辅助元素Ni形成MnNiOx的效果及其对化学状态和催化活性的影响。我们在此描述的检测方案是一般性的,可用于对由多种元素组成的材料进行时间分辨的研究,以跟踪催化和电子转移反应的动力学。

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