醛的选择性生产:从传统替代品到使用g- c3n4基材料的醇光氧化

IF 4.7 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
M. A. Quintana, D. Rodriguez-Padrón, P. Jiménez-Calvo, M. Calero, R. R. Solís and M. J. Muñoz-Batista
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引用次数: 0

摘要

选择性光催化在很大程度上被忽视,但近年来发展迅速,现在包括了一些新的应用。最受欢迎的应用之一是光催化氧化的醇到相应的醛。人们对利用这种技术选择性地生产苯甲醛、肉桂醛和香兰素等化合物以及其他各种有价值的成分非常感兴趣。这项工作考察了常见的生产方法和替代的合成路线,从他们的醇醛,重点是基于g- c3n4光催化方案。讨论包括对g-C3N4结构的分析,该结构在醇的选择性氧化中显示出显著的结果,并对其机制进行了批判性的回顾,强调了报告反应的量子产率的重要性。文献数据表明,光催化是传统醛生产方法的可行替代方案,对目标产物的选择性值最大(>99%),但催化活性仍然有限,量子产率相对较低,限制了实验室规模以外的过渡。然而,基于g- c3n4的先进材料中的电荷处理足以满足这种应用,并且它们在太阳能照明条件下的实现是有希望的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Selective production of aldehydes: from traditional alternatives to alcohol photo-oxidation using g-C3N4-based materials

Selective production of aldehydes: from traditional alternatives to alcohol photo-oxidation using g-C3N4-based materials

Once largely overlooked, selective photocatalysis has recently seen rapid development and now includes several new applications. One of the most sought-after applications is the photocatalytic oxidation of alcohols to their corresponding aldehydes. There is significant interest in the selective production of compounds such as benzaldehyde, cinnamaldehyde, and vanillin using this technology, among various other valuable components. This work examines common production methods and alternative synthesis routes for aldehydes from their alcohols, focusing on g-C3N4-based photocatalytic schemes. The discussion includes an analysis of g-C3N4 structures that have shown significant results in the selective oxidation of alcohols and provides a critical review of the mechanism, highlighting the importance of reporting quantum yields of the reaction. Literature data suggest that photocatalysis is a viable alternative to traditional aldehyde production methods, with maximum selectivity values towards the product of interest (>99%), but catalytic activity remains limited, with relatively low quantum yields, restricting the transition beyond the laboratory scale. However, the charge handling in g-C3N4-based advanced materials is adequate for this application, and their implementation under solar illumination conditions is promising.

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来源期刊
Materials Advances
Materials Advances MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
7.60
自引率
2.00%
发文量
665
审稿时长
5 weeks
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