化学
光催化
纤维素
氮气
固氮
无机化学
化学工程
环境化学
有机化学
催化作用
工程类
作者
Ziyi Wang,Beijia Yuan,Fuguang Zhang,Yan Chen,Jiping Tang,Liang Bao,Yong‐Jun Yuan
标识
DOI:10.1021/acs.inorgchem.4c01162
摘要
Photocatalytic nitrogen fixation from N2 provides an alternative strategy for ammonia (NH3) production, but it was limited by the consumption of a sacrificial electron donor for the currently reported half-reaction system. Here, we use naturally abundant and renewable cellulose as the sacrificial reagent for photocatalytic nitrogen fixation over oxygen-vacancy-modified MoO3 nanosheets as the photocatalyst. In this smartly designed photocatalytic system, the photooxidation of cellulose not only generates value-added chemicals but also provides electrons for the N2 reduction reaction and results in the production of NH3 with a maximum rate of 68 μmol·h–1·g–1. Also, the oxygen vacancies provide efficient active sites for both cellulose oxygenolysis and nitrogen fixation reactions. This work represents useful inspiration for realizing nitrogen fixation coupled with the generation of value-added chemicals from N2 and cellulose through a photocatalysis strategy.
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