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Conversion of CO2 into renewable fuel over Pt-g-C3N4/KNbO3 composite photocatalyst

机译:Pt-g-C3N4 / KNbO3复合光催化剂将二氧化碳转化为可再生燃料

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摘要

g-C3N4/KNbO3 composites were fabricated by ultrasonic dispersion followed by heat treatment method, and developed as visible-light-sensitive photocatalysts for CO2 conversion. The photocatalysts were characterized by X-ray powder diffraction, scanning electron microscopy, transmission electron microscopy, X-ray photoelectron spectroscopy, photoluminescence spectra, nitrogen adsorption-desorption, and UV-vis diffuse reflection spectroscopy. HRTEM revealed that an intimate interface between g-C3N4 and KNbO3 was formed in the g-C3N4/KNbO3 composite. The g-C3N4/KNbO3 composite exhibited superior photocatalytic performance for CO2 reduction compared to g-C3N4 under visible-light illumination. Such a significant enhancement in the photocatalytic activity was mainly ascribed to the improved separation efficiency of photoinduced carriers at the interface of the g-C3N4/KNbO3 composite, which was beneficial for separating the photoinduced electron-holes and thus improving the photocatalytic performance. The present study would provide a useful method to develop an effective composite photocatalyst for CO2 reduction under visible light irradiation.
机译:g-C3N4 / KNbO3复合材料是通过超声分散然后热处理的方法制备的,并发展成为用于CO2转化的可见光敏感型光催化剂。通过X射线粉末衍射,扫描电子显微镜,透射电子显微镜,X射线光电子能谱,光致发光光谱,氮吸附-解吸和UV-可见漫反射光谱来表征光催化剂。 HRTEM显示,在g-C3N4 / KNbO3复合材料中形成了g-C3N4和KNbO3之间的紧密界面。在可见光照射下,g-C3N4 / KNbO3复合材料与g-C3N4相比,表现出优异的光催化二氧化碳还原性能。这种光催化活性的显着提高主要归因于在g-C3N4 / KNbO3复合材料的界面处光致载流子的分离效率提高,这有利于分离光致电子空穴,从而改善光催化性能。本研究将提供一种有用的方法来开发有效的复合光催化剂,以减少可见光照射下的二氧化碳排放。

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