Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Chengdu, 610054, China.
Angew Chem Int Ed Engl. 2023 Feb 20;62(9):e202218738. doi: 10.1002/anie.202218738. Epub 2023 Jan 18.
In situ detection of highly-oxidized metal intermediates is the key to identifying the active center of an oxygen evolution reaction (OER) catalyst, but it remains challenging for NiFe-based catalysts in an aqueous solution under working conditions. Here, by utilizing the dynamic stability of the Fe O intermediates in a self-healing water oxidation cycle of NiFe-based catalyst, the highly-oxidized Fe intermediates leached into the electrolyte are directly detected by simple spectroelectrochemistry. Our results provide direct evidence that Fe is the active center in NiFe-based OER catalysts. Furthermore, it is revealed that the incorporation of Co into NiFe-based catalyst facilitates the formation of Fe active species, thus enhancing the OER activity of NiCoFe-based catalyst. The insights into the mechanisms for the sustainable generation of Fe active species in these NiFe-based catalysts lay the foundation for the design of more efficient and stable OER catalysts.
在原位检测高度氧化的金属中间体能识别析氧反应 (OER) 催化剂的活性中心,但在工作条件下的水溶液中,这对于基于 NiFe 的催化剂来说仍然具有挑战性。在这里,通过利用 NiFe 基催化剂自修复水氧化循环中 Fe-O 中间态的动力学稳定性,可通过简单的光谱电化学直接检测浸出到电解质中的高度氧化的 Fe 中间态。我们的结果提供了直接证据,表明 Fe 是基于 NiFe 的 OER 催化剂中的活性中心。此外,研究还表明,Co 的掺入有利于 NiFe 基催化剂中 Fe 活性物种的形成,从而提高了基于 NiCoFe 的催化剂的 OER 活性。对这些 NiFe 基催化剂中可持续生成 Fe 活性物种的机制的深入了解为设计更高效和稳定的 OER 催化剂奠定了基础。