光催化
葡萄糖酸
催化作用
氯
氮化碳
化学
金属
无机化学
有机化学
光动力疗法
作者
Xinyu Bai,Qidong Hou,Hengli Qian,Yifan Nie,Tianliang Xia,Ruite Lai,Guanjie Yu,Mian Laiq Ur Rehman,Haijiao Xie,Meiting Ju
标识
DOI:10.1016/j.apcatb.2021.120895
摘要
Photocatalysis has exhibited huge potential in many reactions, but the design of metal-free photocatalytic material for selective upgrading of biomass is rarely achieved. Here, we report that the metal-free photocatalyst consisted of nitrogen-deficient carbon nitride (BNCN) and chlorin e6 (Ce6) can efficiently and selectively oxidize glucose into gluconic acid and glucaric acid. Introducing nitrogen defects could significantly enhance the optical absorption and modulate the band structure. In addition, the combination of Ce6 with BNCN further improve the optical absorption property and promote effective separation of photon-generated carriers. As expected, the resultant [email protected] catalyst gave a total selectivity of gluconic acid, glucaric acid and arabinose as high as 70.9% at glucose conversion up to 62.3%, as is superior to previously reported photocatalytic systems. The mechanism for the enhancement of catalytic performance and the reaction pathway were revealed by experimental studies combined with DFT calculations.
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