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BiOX (X = Cl, Br, I) photocatalytic nanomaterials: Applications for fuels and environmental management

机译:Biox(x = Cl,Br,i)光催化纳米材料:燃料和环境管理的应用

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摘要

Energy and environmental issues are the major concerns in our contemporary "risk society". As a green technique, photocatalysis has been identified as a promising solution for above-mentioned problems. In recent decade, BiOX (X = Cl, Br, I) photocatalytic nanomaterials have sparked numerous interest as economical and efficient photocatalysts for energy conversion and environmental management. The distinctive physicochemical properties of BiOX nanomaterials, especially their energy band structures and levels as well as relaxed layered nanostructures, should be responsible for the visible-light-driven photocatalytic performance improvement, which could be utilized in dealing with the global energy and environmental challenges. In this review, recent advances for the enhancement of BiOX photocatalytic activity are detailedly summarized. Furthermore, the applications of BiOX photocatalysts in water splitting and refractory organic pollutants removal are highlighted to offer guidelines for better development in photocatalysis. Particularly, no relative reports in previous studies were documented in CO2 reduction as well as heavy metals and air pollutants removal, thus this review presented as a considerable research value. Challenges in the construction of high-performance BiOX-based photocatalytic systems are also discussed. With the exponential growth of studies on BiOX photocatalytic nanomaterials, this review provides unique and comprehensive perspectives to design BiOX-based photocatalytic systems with superior visible light photocatalytic activity. The knowledge of both the merits and demerits of BiOX photocatalysts are updated and provided as a reference. (C) 2018 Elsevier B.V. All rights reserved.
机译:能源和环境问题是我们当代“风险社会”的主要问题。作为一种绿色技术,光催化已被识别为上述问题的有希望的解决方案。近十年来,Biox(X = Cl,Br,I)光催化纳米材料引发了许多兴趣,作为能量转换和环境管理的经济高效光催化剂。 Biox纳米材料的独特物理化学性质,尤其是它们的能带结构和水平以及弛豫层状纳米结构,应负责可见光驱动的光催化性能改善,可用于处理全球能源和环境挑战。在本综述中,详细概述了增强生物催化活性的最新进展。此外,突出显示Biox光催化剂在水分裂和难治性有机污染物中的应用,以提供在光催化中更好地发育的指导。特别是,先前研究中没有在二氧化碳减少中记录了先前研究的相关报告以及重质金属和空气污染物去除,因此本综述呈现为可观的研究价值。还讨论了高性能生物催化系统建设的挑战。随着对生物催化纳米材料研究的指数增长,本综述提供了独特而全面的观点,以设计具有优异的可见光光催化活性的生物X的光催化系统。对生物氧化催化剂的优点和缺点的知识进行更新,并作为参考提供。 (c)2018 Elsevier B.v.保留所有权利。

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