光催化
化学
二氧化钛
酒
催化作用
乙腈
香兰素
酒精氧化
光化学
无机化学
有机化学
化学工程
工程类
作者
Qian Zhu,Peng Zhan,Chenxi Zhang,Ruhui Chen,Cong Ren,Hongqing Zhao,Wenqiang Ren,Jiawen Zhang,Peiyong Qin,Di Cai
标识
DOI:10.1002/cptc.202200337
摘要
Abstract Photocatalysis transformation of renewable biomass‐derived building blocks into value‐added chemicals is an attractive strategy in response to the environmental issues caused by the use of unsustainable petrol‐chemical routes. On this basis, photocatalytic selective oxidation of reduced monolignols into aldehydes has emerged as a hotspot to be investigated. Herein, using ammonia solution as nitrogen source, N−TiO 2 photocatalysts were prepared through a simple pyrolysis process. Under visible‐light irradiation, the N−TiO 2 photocatalysts were applied for selective oxidation of vanillyl alcohol into vanillin in acetonitrile. Results suggested that after doping nitrogen into the basic TiO 2 , the N−TiO 2 photocatalysts exhibited a narrow band‐gap that could broaden the light absorption range, inhibit the recombination of photogenerated carriers, and enhance the affinity to the substrate molecules. Consequently, the photocatalytic performances of the vanillyl alcohol can be extensively improved by the N−TiO 2 (N‐400) photocatalyst. A selectivity of 60.37 % of vanillin and a conversion of 60.84 % of vanillyl alcohol can be realized under the optimized conditions. The mechanism for the improved photocatalysis performances of vanillyl alcohol by N−TiO 2 was further proposed by combining the experimental and simulated results, which inferred that h + was the decisive active species for the effective oxidation of vanillyl alcohol. The N−doped TiO 2 photocatalysts are also adequate to selective oxidation of other renewable bio‐alcohols into aldehydes.
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