Fang Cong, Zhou Jian, Zhang Lili, Wan Wenchao, Ding Yuxiao, Sun Xiaoyan
Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, 266101, Qingdao, China.
Shandong Energy Institute, 266101, Qingdao, China.
Nat Commun. 2023 Jul 24;14(1):4449. doi: 10.1038/s41467-023-40177-1.
Dual-atom catalysts, particularly those with heteronuclear active sites, have the potential to outperform the well-established single-atom catalysts for oxygen evolution reaction, but the underlying mechanistic understanding is still lacking. Herein, a large-scale density functional theory is employed to explore the feasibility of *O-*O coupling mechanism, which can circumvent the scaling relationship with improving the catalytic performance of N-doped graphene supported Fe-, Co-, Ni-, and Cu-containing heteronuclear dual-atom catalysts, namely, M'M@NC. Based on the constructed activity maps, a rationally designed descriptor can be obtained to predict homonuclear catalysts. Seven heteronuclear and four homonuclear dual-atom catalysts possess high activities that outperform the minimum theoretical overpotential. The chemical and structural origin in favor of *O-*O coupling mechanism thus leading to enhanced reaction activity have been revealed. This work not only provides additional insights into the fundamental understanding of reaction mechanisms, but also offers a guideline for the accelerated discovery of efficient catalysts.
双原子催化剂,尤其是那些具有异核活性位点的双原子催化剂,有潜力在析氧反应中表现优于已成熟的单原子催化剂,但对其潜在的机理理解仍很缺乏。在此,采用大规模密度泛函理论来探索*O-O耦合机制的可行性,该机制可以通过改善氮掺杂石墨烯负载的含Fe、Co、Ni和Cu的异核双原子催化剂(即M'M@NC)的催化性能来规避比例关系。基于构建的活性图,可以获得一个合理设计的描述符来预测同核催化剂。七种异核和四种同核双原子催化剂具有高活性,其表现优于最小理论过电位。揭示了有利于O-*O耦合机制从而导致反应活性增强的化学和结构起源。这项工作不仅为反应机理的基本理解提供了更多见解,也为加速发现高效催化剂提供了指导。