催化作用
双金属
金属
离域电子
石墨烯
电解质
合理设计
化学
吸附
材料科学
纳米技术
Atom(片上系统)
物理化学
计算机科学
电极
有机化学
嵌入式系统
作者
Yang Yang,Yumin Qian,Haijing Li,Zhenhua Zhang,Yue‐Wen Mu,David Do,Bo Zhou,Jing Dong,Wenjun Yan,Yong Qin,Fang Li,Renfei Feng,Jigang Zhou,Peng Zhang,Juncai Dong,Guihua Yu,Yuanyue Liu,Xian‐Ming Zhang,Xiujun Fan
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2020-06-05
卷期号:6 (23)
被引量:352
标识
DOI:10.1126/sciadv.aba6586
摘要
Single-atom catalysts (SACs) maximize the utility efficiency of metal atoms and offer great potential for hydrogen evolution reaction (HER). Bimetal atom catalysts are an appealing strategy in virtue of the synergistic interaction of neighboring metal atoms, which can further improve the intrinsic HER activity beyond SACs. However, the rational design of these systems remains conceptually challenging and requires in-depth research both experimentally and theoretically. Here, we develop a dual-atom catalyst (DAC) consisting of O-coordinated W-Mo heterodimer embedded in N-doped graphene (W1Mo1-NG), which is synthesized by controllable self-assembly and nitridation processes. In W1Mo1-NG, the O-bridged W-Mo atoms are anchored in NG vacancies through oxygen atoms with W─O─Mo─O─C configuration, resulting in stable and finely distribution. The W1Mo1-NG DAC enables Pt-like activity and ultrahigh stability for HER in pH-universal electrolyte. The electron delocalization of W─O─Mo─O─C configuration provides optimal adsorption strength of H and boosts the HER kinetics, thereby notably promoting the intrinsic activity.
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