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超分子晶体中的碳氮化物:从单原子到异质结及先进光电极

Carbon Nitrides from Supramolecular Crystals: From Single Atoms to Heterojunctions and Advanced Photoelectrodes.

作者信息

Barrio Jesús, Li Junyi, Shalom Menny

机构信息

Department of Chemical Engineering, Imperial College London, London, SW72AZ, England, UK.

Department of Chemistry and Ilse Katz Institute for Nanoscale Science and Technology, Ben-Gurion University of the Negev, Beer-Sheva, 8410501, Israel.

出版信息

Chemistry. 2023 Nov 8;29(62):e202302377. doi: 10.1002/chem.202302377. Epub 2023 Oct 9.

Abstract

Carbon nitride materials (CN) have become one of the most studied photocatalysts within the last 15 years. While CN absorbs visible light, its low porosity and fast electron-hole recombination hinder its photoelectric performance and have motivated the research in the modification of its physical and chemical properties (such as energy band structure, porosity, or chemical composition) by different means. In this Concept we review the utilization of supramolecular crystals as CN precursors to tailor its properties. We elaborate on the features needed in a supramolecular crystal to serve as CN precursor, we delve on the influence of metal-free crystals in the morphology and porosity of the resulting materials and then discuss the formation of single atoms and heterojunctions when employing a metal-organic crystal. We finally discuss the performance of CN photoanodes derived from crystals and highlight the current standing challenges in the field.

摘要

在过去15年里,氮化碳材料(CN)已成为研究最多的光催化剂之一。虽然CN能吸收可见光,但其低孔隙率和快速的电子 - 空穴复合阻碍了其光电性能,并促使人们通过不同方法对其物理和化学性质(如能带结构、孔隙率或化学成分)进行改性研究。在本概念中,我们综述了利用超分子晶体作为CN前驱体来定制其性质的情况。我们阐述了作为CN前驱体的超分子晶体所需的特征,深入探讨了无金属晶体对所得材料形态和孔隙率的影响,然后讨论了使用金属有机晶体时单原子和异质结的形成。我们最后讨论了由晶体衍生的CN光阳极的性能,并突出了该领域当前面临的挑战。

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