Issue 9, 2021

Efficient nitric oxide reduction to ammonia on a metal-free electrocatalyst

Abstract

NH3 synthesis and NO removal are two of the most attractive and challenging processes in electrochemistry. Current research efforts mainly focus on them separately, while the direct electrochemical reduction of NO to NH3 has been less explored. Herein, based on first-principles calculations, we propose a metal-free electrocatalyst, namely, P atom doped single-layer C2N, as a promising candidate system for achieving the direct electroreduction of NO to NH3. Particularly, double P doped C2N (2P@C2N) exhibits excellent catalytic activity and high selectivity, which correlates with the sp3 hybridization of the P atom. Moreover, our microkinetic modeling analysis shows that the turnover frequency of NO reduction to NH3 on 2P@C2N is as large as 8.9 × 105 per s per site at 400 K, suggesting that it exhibits an ultra-fast reaction rate. Our study provides not only the first metal-free electrocatalyst for NO removal, but also an effective alternative avenue for ammonia synthesis.

Graphical abstract: Efficient nitric oxide reduction to ammonia on a metal-free electrocatalyst

Supplementary files

Article information

Article type
Paper
Submitted
17 Nov 2020
Accepted
12 Jan 2021
First published
13 Jan 2021

J. Mater. Chem. A, 2021,9, 5434-5441

Efficient nitric oxide reduction to ammonia on a metal-free electrocatalyst

Q. Wu, H. Wang, S. Shen, B. Huang, Y. Dai and Y. Ma, J. Mater. Chem. A, 2021, 9, 5434 DOI: 10.1039/D0TA11209G

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