长石
纳米团簇
过电位
电子转移
材料科学
电催化剂
Crystal(编程语言)
解吸
氢
电导率
化学物理
单晶
化学工程
化学
无机化学
纳米技术
电化学
吸附
物理化学
电极
结晶学
氧化物
有机化学
工程类
冶金
程序设计语言
计算机科学
作者
Guowei Li,Seunghyun Khim,Celesta S. Chang,Chenguang Fu,Nabhanila Nandi,Fan Li,Qun Yang,Graeme R. Blake,S. Parkin,Gudrun Auffermann,Yan Sun,David A. Muller,A. P. Mackenzie,Claudia Felser
出处
期刊:Cornell University - arXiv
日期:2020-01-01
被引量:1
标识
DOI:10.48550/arxiv.2003.11439
摘要
The observation of extraordinarily high conductivity in delafossite-type PdCoO2 is of great current interest, and there is some evidence that electrons behave like a fluid when flowing in bulk crystals of PdCoO2. Thus, this material is an ideal platform for the study of the electron transfer processes in heterogeneous reactions. Here, we report the use of bulk single crystal PdCoO2 as a promising electrocatalyst for hydrogen evolution reactions (HERs). An overpotential of only 31 mV results in a current density of 10 mA cm^(-2), accompanied by high long-term stability. We have precisely determined that the crystal surface structure is modified after electrochemical activation with the formation of strained Pd nanoclusters in the surface layer. These nanoclusters exhibit reversible hydrogen sorption and desorption, creating more active sites for hydrogen access. The bulk PdCoO2 single crystal with ultra-high conductivity, which acts as a natural substrate for the Pd nanoclusters, provides a high-speed channel for electron transfer
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