A Strongly Coupled Metal/Hydroxide Heterostructure Cascades Carbon Dioxide and Nitrate Reduction Reactions toward Efficient Urea Electrosynthesis
Wei Ye, Ye Zhang, Liang Chen, Fangfang Wu, Yuanhui Yao, Wei Wang, Genping Zhu, Gan Jia 等 13 位
Hangzhou Normal University Zhejiang University of Technology University of Shanghai for Science and Technology University of Wollongong
内容与影响
The direct coupling of nitrate ions and carbon dioxide for urea synthesis presents an appealing alternative to the Bosch–Meiser process in industry. The simultaneous activation of carbon dioxide and nitrate, however, as well as efficient C−N coupling on single active site, poses significant challenges. Here, we propose a novel metal/hydroxide heterostructure strategy based on synthesizing an Ag−CuNi(OH) 2 composite to cascade carbon dioxide and nitrate reduction reactions for urea electrosynthesis. The strongly coupled metal/hydroxide heterostructure interface integrates two distinct sites for carbon dioxide and nitrate activation, and facilitates the coupling of *CO (on silver, where * denotes an active site) and *NH 2 (on hydroxide) for urea formation. Moreover, the strongly coupled interface optimizes the water splitting process and facilitates the supply of active hydrogen atoms, thereby expediting the deoxyreduction processes essential for urea formation. Consequently, our Ag−CuNi(OH) 2 composite delivers a high urea yield rate of 25.6 mmol g cat. −1 h −1 and high urea Faradaic efficiency of 46.1 %, as well as excellent cycling stability. This work provides new insights into the design of dual‐site catalysts for C−N coupling, considering their role on the interface.
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材料 / 化学Ammonia Synthesis and Nitrogen Reduction
Electrocatalysts for Energy Conversion · Advanced Photocatalysis Techniques
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