Sun Liang, Yuwono Jodie A, Zhang Shilin, Chen Biao, Li Guanjie, Jin Huanyu, Johannessen Bernt, Mao Jianfeng, Zhang Chaofeng, Zubair Muhammad, Bedford Nicholas, Guo Zaiping
School of Chemical Engineering, The University of Adelaide, Adelaide, 5000, Australia.
School of Materials Science and Engineering and Tianjin Key Laboratory of Composite and Functional Materials, Tianjin University, Tianjin, 300350, China.
Adv Mater. 2024 Jun;36(25):e2401288. doi: 10.1002/adma.202401288. Epub 2024 Apr 9.
Designing electrocatalysts with high activity and durability for multistep reduction and oxidation reactions is challenging. High-entropy alloys (HEAs) are intriguing due to their tunable geometric and electronic structure through entropy effects. However, understanding the origin of their exceptional performance and identifying active centers is hindered by the diverse microenvironment in HEAs. Herein, NiFeCoCuRu HEAs designed with an average diameter of 2.17 nm, featuring different adsorption capacities for various reactants and intermediates in Li-mediated CO redox reactions, are introduced. The electronegativity-dependent nature of NiFeCoCuRu HEAs induces significant charge redistribution, shifting the d-band center closer to Fermi level and forming highly active clusters of Ru, Co, and Ni for Li-based compounds adsorptions. This lowers energy barriers and simultaneously stabilizes *LiCO and LiCO+CO intermediates, enhancing the efficiency of both CO reduction and LiCO decomposition over extended periods. This work provides insights into specific active site interactions with intermediates, highlighting the potential of HEAs as promising catalysts for intricate CO redox reactions.
设计具有高活性和耐久性的用于多步还原和氧化反应的电催化剂具有挑战性。高熵合金(HEAs)因其通过熵效应可调节的几何和电子结构而备受关注。然而,高熵合金中多样的微环境阻碍了对其卓越性能起源的理解以及活性中心的识别。在此,引入了平均直径为2.17 nm的NiFeCoCuRu高熵合金,其在锂介导的CO氧化还原反应中对各种反应物和中间体具有不同的吸附能力。NiFeCoCuRu高熵合金的电负性依赖性导致显著的电荷重新分布,使d带中心更接近费米能级,并形成用于锂基化合物吸附的Ru、Co和Ni的高活性簇。这降低了能垒,同时稳定了*LiCO和LiCO + CO中间体,在较长时间内提高了CO还原和LiCO分解的效率。这项工作深入了解了特定活性位点与中间体的相互作用,突出了高熵合金作为复杂CO氧化还原反应有前景的催化剂的潜力。