Nanoscale zinc oxide based heterojunctions as visible light active photocatalysts for hydrogen energy and environmental remediation

Suneel Kumar, Ajay Kumar, Ashish Kumar, V. Krishnan
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引用次数: 73

Abstract

ABSTRACT In the recent years, zinc oxide has emerged as one of the promising alternate materials to titania for photocatalytic applications due to its several advantages properties. This review recapitulates the ongoing advancement in the field of ZnO-based heterojunctions as visible light responsive photocatalysts for energy conversion (hydrogen evolution) and environmental remediation (pollutants degradation) applications. After a short introduction about zinc oxide materials, the various approaches utilized in the design and development of efficient ZnO-based nanoheterostructures has been discussed in detail. Specifically, strategies such as coupling ZnO with other semiconductors, supporting on carbonaceous materials, decorating with noble metal nanoparticles, doping with heteroatoms and engineering defects in the semiconductor material have been elaborated with a particular emphasis on hydrogen energy and organic pollutants removal. Finally, the future perspective of this material has been highlighted. This comprehensive review not only summarizes the recent literature in this topic, but also provides a detailed insight on the scope of this material for hydrogen energy and environmental remediation applications. Graphical Abstract
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纳米氧化锌异质结作为氢能和环境修复的可见光活性光催化剂
近年来,氧化锌因其多种优异的性能而成为二氧化钛光催化应用的理想替代材料之一。本文综述了zno基异质结作为可见光响应光催化剂在能量转化(析氢)和环境修复(污染物降解)方面的最新进展。在简要介绍氧化锌材料之后,详细讨论了设计和开发高效氧化锌基纳米异质结构所采用的各种方法。具体而言,本文阐述了ZnO与其他半导体的耦合、碳质材料的支撑、贵金属纳米粒子的修饰、杂原子的掺杂以及半导体材料的工程缺陷等策略,并特别强调了氢能和有机污染物的去除。最后,对该材料的未来前景进行了展望。本文不仅对近年来有关该主题的文献进行了综述,而且对该材料在氢能和环境修复方面的应用范围进行了详细的介绍。图形抽象
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