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Effect of graphitic carbon nitride microstructures on the activity and selectivity of photocatalytic CO2 reduction under visible light

机译:石墨碳氮微观结构对可见光下光催化二氧化碳的活性和选择性的影响

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摘要

Two kinds of graphitic carbon nitride (g-C3N4) were synthesized through a pyrolysis process of urea or melamine. It is found that the obtained g-C3N4, as photocatalysts, can reduce CO2 to organic fuels under visible light, and exhibit different photoactivity and selectivity on the formation of CH3OH and C2H5OH. The product derived from the urea (denoted as u-g-C3N4) shows a mesoporous flake-like structure with a larger surface area and higher photoactivity for the CO2 reduction than the non-porous flaky product obtained from melamine (denoted as m-g-C3IM4). Moreover, using u-g-C3N4 as a photocatalyst can result in the formation of a mixture containing CH3OH and C2H5OH, while m-g-C3N4 only leads to the selective formation of C2H5OH. The present interesting findings could shed light on the design of efficient, eco-friendly and convenient photocatalysts and the tuning of their photoreactivity in the field of sustainable light-tb-energy conversion.
机译:通过尿素或三聚氰胺的热解过程合成了两种类型的石墨氮(G-C3N4)。 发现所获得的G-C3N4作为光催化剂可以将CO2降低到可见光下的有机燃料,并在CH3OH和C2H5OH的形成时表现出不同的光感和选择性。 源自尿素(表示为U-G-C3N4)的产物显示出介孔片状结构,其表面积较大,而二氧化碳减少的光活性较高,而光活性则比从三聚氰胺获得的非孔片(表示为M-G-C3IM4)。 此外,使用U-G-C3N4作为光催化剂可以导致形成含有CH3OH和C2H5OH的混合物,而M-G-C3N4仅导致C2H5OH的选择性形成。 目前的有趣发现可能会阐明高效,环保和方便的光催化剂以及在可持续的光TB-能量转换领域的光电反应性调整。

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