Towards Higher NH3 Faradaic Efficiency: Selective‐Poisoning of HER Active Sites by Co‐Feeding CO in NO Electroreduction**

Author:

Li Min1,Verkuil Jarco1,Bunea Sorin1,Kortlever Ruud2ORCID,Urakawa Atsushi1ORCID

Affiliation:

1. Catalysis Engineering Department of Chemical Engineering Delft University of Technology Van der Maasweg 9 2629 HZ Delft The Netherlands

2. Process & Energy Department Faculty of Mechanical Maritime and Materials Engineering Large-Scale Energy Storage Delft University of Technology Leeghwaterstraat 39 2628 CB Delft The Netherlands

Abstract

AbstractDirect electroreduction of nitric oxide offers a promising avenue to produce valuable chemicals, such as ammonia, which is an essential chemical to produce fertilizers. Direct ammonia synthesis from NO in a polymer electrolyte membrane (PEM) electrolyzer is advantageous for its continuous operation and excellent mass transport characteristics. However, at a high current density, the faradaic efficiency of NO electroreduction reaction is limited by the competing hydrogen evolution reaction (HER). Herein, we report a CO‐mediated selective poisoning strategy to enhance the faradaic efficiency (FE) towards ammonia by suppressing the HER. In the presence of only NO at the cathode, Pt/C and Pd/C catalysts showed a lower FE towards NH3 than to H2 due to the dominating HER. Cu/C catalyst showed a 78 % FE towards NH3 at 2.0 V due to the stronger binding affinity to NO* compared to H*. By co‐feeding CO, the FE of Cu/C catalyst towards NH3 was improved by 12 %. More strikingly, for Pd/C, the FE towards NH3 was enhanced by 95 % with CO co‐feeding, by effectively suppressing HER. This is attributed to the change of the favorable surface coverage resulting from the selective and competitive binding of CO* to H* binding sites, thereby improving NH3 selectivity.

Funder

China Scholarship Council

Publisher

Wiley

Subject

General Energy,General Materials Science,General Chemical Engineering,Environmental Chemistry

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Active Hydrogen for Electrochemical Ammonia Synthesis;Advanced Functional Materials;2024-04-15

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