Atomically-precise dopant-controlled single cluster catalysis for electrochemical nitrogen reduction

Author:

Yao ChuanhaoORCID,Guo Na,Xi Shibo,Xu Cong-QiaoORCID,Liu Wei,Zhao XiaoxuORCID,Li JingORCID,Fang Hanyan,Su Jie,Chen ZhongxinORCID,Yan Huan,Qiu Zhizhan,Lyu Pin,Chen Cheng,Xu HaominORCID,Peng Xinnan,Li XinzheORCID,Liu BinORCID,Su ChenliangORCID,Pennycook Stephen J.,Sun Cheng-Jun,Li JunORCID,Zhang ChunORCID,Du YonghuaORCID,Lu Jiong

Abstract

AbstractThe ability to precisely engineer the doping of sub-nanometer bimetallic clusters offers exciting opportunities for tailoring their catalytic performance with atomic accuracy. However, the fabrication of singly dispersed bimetallic cluster catalysts with atomic-level control of dopants has been a long-standing challenge. Herein, we report a strategy for the controllable synthesis of a precisely doped single cluster catalyst consisting of partially ligand-enveloped Au4Pt2 clusters supported on defective graphene. This creates a bimetal single cluster catalyst (Au4Pt2/G) with exceptional activity for electrochemical nitrogen (N2) reduction. Our mechanistic study reveals that each N2 molecule is activated in the confined region between cluster and graphene. The heteroatom dopant plays an indispensable role in the activation of N2 via an enhanced back donation of electrons to the N2 LUMO. Moreover, besides the heteroatom Pt, the catalytic performance of single cluster catalyst can be further tuned by using Pd in place of Pt as the dopant.

Funder

National Natural Science Foundation of China

U.S. Department of Energy

Ministry of Education - Singapore

National University of Singapore

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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