Skip to content

Opening book details…

Can I read Sulfur‐Dopant‐Promoted Electroreduction of CO~2~ over Coordinatively Unsaturated Ni‐N~2~ Moieties on EtoBox?

Sulfur‐Dopant‐Promoted Electroreduction of CO~2~ over Coordinatively Unsaturated Ni‐N~2~ Moieties by Chen Jia; Xin Tan; Yong Zhao; Wenhao Ren; Yibing Li; Zhen Su; Sean C. Smith; Chuan Zhao is a Chemistry article available to read on EtoBox.

What is Sulfur‐Dopant‐Promoted Electroreduction of CO~2~ over Coordinatively Unsaturated Ni‐N~2~ Moieties about?

## Abstract Atomically dispersed nickel–nitrogen–carbon (Ni‐N‐C) moieties are promising for efficient electrochemical CO~2~‐to‐CO conversion. To improve the intrinsic electrocatalytic activity, it is essential but challenging to steer the coordination environment of Ni centers for promoting the CO formation kinetics. Here, we introduce alien sulfur atoms to tune the local electronic density of unsaturated NiN~2~ species. A coordinated structure evolution is detected and S vacancies are generated at high overpotentials, as confirmed by X‐ray absorption spectroscopy. The sulfur dopants enhance CO selectivity and activity over normal unsaturated NiN~2~ structure, reaching a high CO Faradaic efficiency of 97 % and a large CO current density of 40.3 mA cm^−2^ in a H‐cell at −0.8 V and −0.9 V (vs. RHE), respectively. DFT calculations reveal both doped S atoms and evolved S vacancies in the NiN~2~ coordination environment contribute to the reduced energy barriers for CO~2~ electroreduction to CO.

Who reads Sulfur‐Dopant‐Promoted Electroreduction of CO~2~ over Coordinatively Unsaturated Ni‐N~2~ Moieties?

It is typically read by researchers, students, and practitioners in Chemistry.

Author
Chen Jia; Xin Tan; Yong Zhao; Wenhao Ren; Yibing Li; Zhen Su; Sean C. Smith; Chuan Zhao
Publisher
Wiley
Published
2021
Language
EN
Field
Chemistry (Physical Sciences)

More by Chen Jia; Xin Tan; Yong Zhao; Wenhao Ren; Yibing Li; Zhen Su; Sean C. Smith; Chuan Zhao

Browse all works by Chen Jia; Xin Tan; Yong Zhao; Wenhao Ren; Yibing Li; Zhen Su; Sean C. Smith; Chuan Zhao