Li Jiayuan, Hu Jun, Zhang Mingkai, Gou Wangyan, Zhang Sai, Chen Zhong, Qu Yongquan, Ma Yuanyuan
Key Laboratory of Special Functional and Smart Polymer Materials of Ministry of Industry and Information Technology, School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an, China.
School of Chemical Engineering, Northwest University, Xi'an, China.
Nat Commun. 2021 Jun 9;12(1):3502. doi: 10.1038/s41467-021-23750-4.
Hydrogen spillover phenomenon of metal-supported electrocatalysts can significantly impact their activity in hydrogen evolution reaction (HER). However, design of active electrocatalysts faces grand challenges due to the insufficient understandings on how to overcome this thermodynamically and kinetically adverse process. Here we theoretically profile that the interfacial charge accumulation induces by the large work function difference between metal and support (∆Φ) and sequentially strong interfacial proton adsorption construct a high energy barrier for hydrogen transfer. Theoretical simulations and control experiments rationalize that small ∆Φ induces interfacial charge dilution and relocation, thereby weakening interfacial proton adsorption and enabling efficient hydrogen spillover for HER. Experimentally, a series of Pt alloys-CoP catalysts with tailorable ∆Φ show a strong ∆Φ-dependent HER activity, in which PtIr/CoP with the smallest ∆Φ = 0.02 eV delivers the best HER performance. These findings have conclusively identified ∆Φ as the criterion in guiding the design of hydrogen spillover-based binary HER electrocatalysts.
金属负载型电催化剂的氢溢流现象会显著影响其析氢反应(HER)活性。然而,由于对如何克服这一热力学和动力学不利过程的认识不足,活性电催化剂的设计面临巨大挑战。在此,我们从理论上分析表明,金属与载体之间较大的功函数差(∆Φ)诱导的界面电荷积累以及随之而来的强界面质子吸附为氢转移构建了一个高能垒。理论模拟和对照实验表明,小的∆Φ会导致界面电荷稀释和重新分布,从而削弱界面质子吸附并实现用于HER的高效氢溢流。实验上,一系列具有可定制∆Φ的Pt合金-CoP催化剂表现出强烈的∆Φ依赖性HER活性,其中∆Φ最小为0.02 eV的PtIr/CoP具有最佳的HER性能。这些发现最终确定∆Φ为指导基于氢溢流的二元HER电催化剂设计的标准。