Selective electrocatalytic synthesis of urea with nitrate and carbon dioxide

二氧化碳 硝酸盐 尿素 催化作用 化学 人口 无机化学 氮气 有机化学 社会学 人口学
作者
Chade Lv,Lixiang Zhong,Hengjie Liu,Zhiwei Fang,Chunshuang Yan,Mengxin Chen,Yi Kong,Carmen Lee,Daobin Liu,Shuzhou Li,Jiawei Liu,Li Song,Gang Chen,Qingyu Yan,Guihua Yu
出处
期刊:Nature sustainability [Springer Nature]
卷期号:4 (10): 868-876 被引量:689
标识
DOI:10.1038/s41893-021-00741-3
摘要

Synthetic nitrogen fertilizer such as urea has been key to increasing crop productivity and feeding a growing population. However, the conventional urea production relies on energy-intensive processes, consuming approximately 2% of annual global energy. Here, we report on a more-sustainable electrocatalytic approach that allows for direct and selective synthesis of urea from nitrate and carbon dioxide with an indium hydroxide catalyst at ambient conditions. Remarkably, Faradaic efficiency, nitrogen selectivity and carbon selectivity reach 53.4%, 82.9% and ~100%, respectively. The engineered surface semiconducting behaviour of the catalyst is found to suppress hydrogen evolution reaction. The key step of C–N coupling initiates through the reaction between *NO2 and *CO2 intermediates owing to the low energy barrier on {100} facets. This work suggests an appealing route of urea production and provides deep insight into the underlying chemistry of C–N coupling reaction that could guide sustainable synthesis of other indispensable chemicals. Urea is one the most-used synthetic nitrogen fertilizers that have been key to feeding a growing population. However, its production is energy intensive. Here, the authors show an electrocatalytic approach that allows for selective urea synthesis from nitrate and carbon dioxide at ambient conditions.
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