Graphitic carbon nitride meets molecular oxygen: New sustainable photocatalytic ways for the oxidation of organic molecules

Gaia Grando , Giuseppe Sportelli , Giacomo Filippini , Michele Melchionna , Paolo Fornasiero
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Abstract

In recent years, organic chemists have taken a resolute step toward green photocatalytic synthesis. In this regard, the oxidation of organic compounds with molecular oxygen is one of the most important classes of transformations, as it increases molecular complexity while avoiding the use of toxic and harmful oxidants. To this aim, the development of new and efficient photocatalysts capable of driving valuable oxidative reactions in a sustainable manner is highly desirable. These novel photocatalytic systems need to be metal-free, easy-to-prepare, and potentially recyclable. Carbon nitride (CN) fulfills all these requirements because of its outstanding physicochemical properties, thus emerging as a promising heterogeneous photocatalytic platform. The growing popularity of this material is also substantiated by its fast and facile preparation from readily available and inexpensive molecular precursors. This Review aims at highlighting the recent advances in synthesis of carbon nitride-based materials and their applications in organic photocatalysis for the oxidation of organic molecules in presence of molecular oxygen. Lastly, forward-looking opportunities within this intriguing research field are mentioned.

Abstract Image

石墨氮化碳与分子氧相遇:有机分子氧化的可持续光催化新方法
近年来,有机化学家朝着绿色光催化合成迈出了坚定的一步。在这方面,有机化合物与分子氧的氧化是最重要的转化类型之一,因为它增加了分子的复杂性,同时避免了使用有毒和有害的氧化剂。为此,开发新的、高效的光催化剂,以可持续的方式驱动有价值的氧化反应是非常可取的。这些新型光催化系统需要不含金属,易于制备,并且可能可回收利用。氮化碳(CN)以其优异的物理化学性质满足了这些要求,成为一种很有前途的多相光催化平台。这种材料的日益普及也证实了它的快速和容易的制备,从容易获得和廉价的分子前体。本文综述了近年来氮化碳基材料的合成及其在分子氧存在下有机光催化氧化有机分子中的应用。最后,提到了这个有趣的研究领域的前瞻性机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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