Wang Xiaoning, Zhao Lianming, Li Xuejin, Liu Yong, Wang Yesheng, Yao Qiaofeng, Xie Jianping, Xue Qingzhong, Yan Zifeng, Yuan Xun, Xing Wei
State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Qingdao, 266580, P. R. China.
School of Materials Science and Engineering, Qingdao University of Science and Technology, Qingdao, 266042, P. R. China.
Nat Commun. 2022 Mar 24;13(1):1596. doi: 10.1038/s41467-022-29276-7.
The discord between the insufficient abundance and the excellent electrocatalytic activity of Pt urgently requires its atomic-level engineering for minimal Pt dosage yet maximized electrocatalytic performance. Here we report the design of ultrasmall triphenylphosphine-stabilized Pt nanoclusters for electrocatalytic hydrogen oxidation reaction in alkaline solution. Benefiting from the self-optimized ligand effect and atomic-precision structure, the nanocluster electrocatalyst demonstrates a high mass activity, a high stability, and outperforms both Pt single atoms and Pt nanoparticle analogues, uncovering an unexpected size optimization principle for designing Pt electrocatalysts. Moreover, the nanocluster electrocatalyst delivers a high CO-tolerant ability that conventional Pt/C catalyst lacks. Theoretical calculations confirm that the enhanced electrocatalytic performance is attributable to the bifold effects of the triphenylphosphine ligand, which can not only tune the formation of atomically precise platinum nanoclusters, but also shift the d-band center of Pt atoms for favorable adsorption kinetics of *H, *OH, and CO.
铂的丰度不足与其优异的电催化活性之间的矛盾,迫切需要对其进行原子级工程设计,以实现铂用量最少但电催化性能最大化。在此,我们报道了用于碱性溶液中电催化氢氧化反应的超小三苯基膦稳定的铂纳米团簇的设计。受益于自优化的配体效应和原子精确结构,该纳米团簇电催化剂表现出高的质量活性、高稳定性,并且优于铂单原子和铂纳米颗粒类似物,揭示了设计铂电催化剂的意外尺寸优化原则。此外,该纳米团簇电催化剂具有传统铂碳催化剂所缺乏的高抗一氧化碳能力。理论计算证实,增强的电催化性能归因于三苯基膦配体的双重作用,它不仅可以调节原子精确的铂纳米团簇的形成,还可以移动铂原子的d带中心,以实现对*H、*OH和CO的有利吸附动力学。