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A General Synthesis of Porous Carbon Nitride Films with Tunable Surface Area and Photophysical Properties

机译:具有可调谐表面积和光学性质的多孔碳氮化物膜的一般合成

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摘要

Graphitic carbon nitride (g-CN) has emerged as a promising material for energy-related applications. However, exploitation of g-CN in practical devices is still limited owing to difficulties in fabricating g-CN films with adjustable properties and high surface area. A general and simple pathway is reported to grow highly porous and large-scale g-CN films with controllable chemical and photophysical properties on various substrates using the doctor blade technique. The growth of g-CN films, ascribed to the formation of a supramolecular paste, comprises g-CN monomers in ethylene glycol, which can be cast on different substrates. The g-CN composition, porosity, and optical properties can be tuned by the design of the supramolecular paste, which upon calcination results in a continuous porous g-CN network. The strength of the porous structure is demonstrated by high electrochemically active surface area, excellent dye adsorption and photoelec-trochemical and photodegradation properties.
机译:石墨碳氮化物(G-CN)已成为能源相关应用的有希望的材料。 然而,由于制造具有可调节性能和高表面积的G-CN薄膜的困难,在实际装置中对实际装置的G-CN的利用仍然有限。 据报道,一般和简单的途径在使用刮刀技术的各种基板上生长高度多孔和大规模的G-CN膜,并在各种基板上具有可控化学和光学性质。 归因于形成超分子浆料的G-CN膜的生长,包括乙二醇中的G-CN单体,其可在不同的基材上浇铸。 可以通过超分子浆料的设计调节G-CN组合物,孔隙率和光学性质,这在煅烧后导致连续多孔G-CN网络。 通过高电化学活性表面积,优异的染料吸附和光电化学和光降解性能来证明多孔结构的强度。

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