袁勋

教授

教授 博士生导师 硕士生导师

电子邮箱:

所在单位:材料化学教研室

学历:博士研究生

办公地点:四方校区CCE1306

论文成果

当前位置: 中文主页 >> 科学研究 >> 论文成果

Atomic-precision Pt-6 nanoclusters for enhanced hydrogen electro-oxidation

发布时间:2023-10-19 点击次数:

关键字:EVOLUTION; OXIDATION; CATALYSTS; EFFICIENT; CLUSTERS; GOLD; ACTIVATION; INSIGHT; METALS
摘要: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-6 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. While Pt is an active fuel cell catalyst, it's low abundance and high cost spurs research into boosting performances from lesser Pt amounts. Here, authors design atomically precise triphenylphosphine-stabilized Pt nanoclusters with high activities and durabilities for electrocatalytic H-2 oxidation.
卷号:13
期号:1
是否译文: