Zhang Yao, Wang Runze, Zhu Longqi, Li Xu, Sun Caixia, Liu Haizhen, Zhu Lei, Wang Kuikui
Institute of Materials for Energy and Environment, Laboratory of New Fiber Materials and Modern Textile, Growing Basis for State Key Laboratory, College of Materials Science and Engineering, Qingdao University, Qingdao 266071, China.
Key Laboratory of New Metallic Functional Materials and Advanced Surface Engineering in Universities of Shandong, School of Mechanical and Electronic Engineering, Qingdao Binhai University, Qingdao 266555, China.
Materials (Basel). 2023 Jul 20;16(14):5115. doi: 10.3390/ma16145115.
Oxygen evolution reaction is a momentous part of electrochemical energy storage and conversion devices such as rechargeable metal-air batteries. It is particularly urgent to develop low-cost and efficient electrocatalysts for oxygen evolution reactions. As a potential substitute for noble metal electrocatalysts, transition metal selenides still prove challenging in improving the activity of oxygen evolution reaction and research into reaction intermediates. In this study, a simple one-step solvothermal method was used to prepare a polymetallic compound carbon matrix composite (CoSe/NiSe/FeO@C) with a multilayered nanosheets structure. It exhibited good OER activity in an alkaline electrolyte solution, with an overpotential of 268 mV at 10 mA/cm. In addition, this catalyst also showed excellent performance in the 24 h stability test. The composite presents a multi-layer sheet structure, which effectively improves the contact between the active site and the electrolyte. The selenide formed by Ni and Co has a synergistic effect, and FeO and CoSe form a heterojunction structure which can effectively improve the reaction activity by initiating the electronic coupling effect through the interface modification. In addition, carbon quantum dots have rich heteroatoms and electron transferability, which improves the electrochemical properties of the composites. This work provides a new strategy for the preparation of highly efficient OER electrocatalysts utilizing the multi-metal synergistic effect.
析氧反应是可充电金属空气电池等电化学能量存储和转换装置的重要组成部分。开发用于析氧反应的低成本高效电催化剂尤为迫切。作为贵金属电催化剂的潜在替代品,过渡金属硒化物在提高析氧反应活性和研究反应中间体方面仍具有挑战性。在本研究中,采用简单的一步溶剂热法制备了具有多层纳米片结构的多金属复合碳基复合材料(CoSe/NiSe/FeO@C)。它在碱性电解质溶液中表现出良好的析氧反应活性,在10 mA/cm²时过电位为268 mV。此外,该催化剂在24小时稳定性测试中也表现出优异的性能。该复合材料呈现多层片状结构,有效改善了活性位点与电解质之间的接触。Ni和Co形成的硒化物具有协同效应,FeO和CoSe形成异质结结构,可通过界面修饰引发电子耦合效应有效提高反应活性。此外,碳量子点具有丰富的杂原子和电子转移能力,改善了复合材料的电化学性能。这项工作为利用多金属协同效应制备高效析氧电催化剂提供了一种新策略。