Wu Zhi-Peng, Zhang Huabin, Zuo Shouwei, Wang Yan, Zhang Song Lin, Zhang Jing, Zang Shuang-Quan, Lou Xiong Wen David
Green Catalysis Center, and College of Chemistry, Zhengzhou University, Zhengzhou, 450001, P. R. China.
School of Chemical and Biomedical Engineering, Nanyang Technological University, 62 Nanyang Drive, Singapore, 637459, Singapore.
Adv Mater. 2021 Oct;33(40):e2103004. doi: 10.1002/adma.202103004. Epub 2021 Aug 21.
Non-noble-metal-based nanomaterials can exhibit extraordinary electrocatalytic performance toward the oxygen evolution reaction (OER) by harnessing the structural evolution during catalysis and the synergistic effect between elements. However, the structure of active centers in bimetallic/multimetallic catalysts is under long-time debate in the catalysis community. Here, an efficient bimetallic Ni-Fe selenide-derived OER electrocatalyst is reported and the structure-activity correlation during the OER evolution studied. By combining experiments and theoretical calculations, a conceptual advance is provided, in that the local coordination structure distortion and disordering of active sites inherited from the pre-catalyst and post-formed by a further reconstruction are responsible for boosting the OER performance. The active center is identified on Ni sites showing moderate bindings with oxygenous intermediates rather than Fe sites with strong and poisonous adsorptions. These findings provide crucial understanding in manipulating the local coordination and electronic structures toward rational design and fabrication of efficient OER electrocatalysts.
通过利用催化过程中的结构演变以及元素之间的协同效应,非贵金属基纳米材料对析氧反应(OER)可表现出非凡的电催化性能。然而,双金属/多金属催化剂中活性中心的结构在催化领域长期存在争议。在此,报道了一种高效的双金属镍铁硒化物衍生的OER电催化剂,并研究了OER过程中的结构 - 活性相关性。通过结合实验和理论计算,取得了一项概念性进展,即前体催化剂继承而来并通过进一步重构后形成的活性位点的局部配位结构畸变和无序化有助于提高OER性能。活性中心在与含氧中间体具有适度结合的镍位点上被识别,而非具有强吸附和毒化吸附的铁位点。这些发现为合理设计和制造高效OER电催化剂时调控局部配位和电子结构提供了关键认识。