Sanati Soheila, Wang Qiyou, Abazari Reza, Liu Min
Department of Chemistry, Faculty of Science, University of Maragheh, P. O. Box 55181-83111, Maragheh, Iran.
Hunan Joint International Research Center for Carbon Dioxide Resource Utilization, State Key Laboratory of Powder Metallurgy, School of Physics, Central South University, Changsha, 410083, P. R. China.
Chem Commun (Camb). 2024 Mar 14;60(23):3129-3137. doi: 10.1039/d3cc06073j.
Designing low-dimensional nanomaterials is vital to address the energy and environmental crisis by means of electrocatalytic conversion reactions. Bimetallenes, as an emerging class of 2D materials, present promise for electrocatalytic conversion reactions. By leveraging atomically thin layers, bimetallenes present unsaturated surface coordination, high specific surface area and high conductivity, which are all indispensable features for heterogeneous electrochemical reactions. However, the intrinsic activity and stability of bimetallenes needs to be improved further for bimetallene electrocatalysts, due to the higher demands of practical applications. Recently, many strategies have been developed to optimize the chemical or electronic structure to accommodate transfer of reactants, adsorption or desorption of intermediates, and dissociation of products. Considering that most such work focuses on adjusting the structure, this review offers in-depth insight into recent representative strategies for optimizing bimetallene electrocatalysts, mainly including alloying, strain effects, ligand effects, defects and heteroatom doping. Moreover, by summarizing the performance of bimetallenes optimized using various strategies, we provide a means to understand structure-property relationships. In addition, future prospects and challenges are discussed for further development of bimetallene electrocatalysts.
设计低维纳米材料对于通过电催化转化反应解决能源和环境危机至关重要。双金属烯作为一类新兴的二维材料,在电催化转化反应方面展现出前景。通过利用原子级超薄层,双金属烯具有不饱和表面配位、高比表面积和高导电性,这些都是多相电化学反应不可或缺的特性。然而,由于实际应用的更高要求,双金属烯电催化剂的本征活性和稳定性仍需进一步提高。最近,人们已经开发出许多策略来优化化学或电子结构,以适应反应物的转移、中间体的吸附或解吸以及产物的解离。鉴于大多数此类工作都集中在调整结构上,本综述深入探讨了近期优化双金属烯电催化剂的代表性策略,主要包括合金化、应变效应、配体效应、缺陷和杂原子掺杂。此外,通过总结使用各种策略优化后的双金属烯的性能,我们提供了一种理解结构-性能关系的方法。此外,还讨论了双金属烯电催化剂进一步发展的未来前景和挑战。