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用于环境应用的锰基材料。

MnO -Based Materials for Environmental Applications.

作者信息

Yang Ruijie, Fan Yingying, Ye Ruquan, Tang Yuxin, Cao Xiehong, Yin Zongyou, Zeng Zhiyuan

机构信息

Department of Materials Science and Engineering, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong, 999077, P. R. China.

Department of Chemistry, State Key Lab of Marine Pollution, City University of Hong Kong, Hong Kong, 999077, P. R. China.

出版信息

Adv Mater. 2021 Mar;33(9):e2004862. doi: 10.1002/adma.202004862. Epub 2021 Jan 14.

Abstract

Manganese dioxide (MnO ) is a promising photo-thermo-electric-responsive semiconductor material for environmental applications, owing to its various favorable properties. However, the unsatisfactory environmental purification efficiency of this material has limited its further applications. Fortunately, in the last few years, significant efforts have been undertaken for improving the environmental purification efficiency of this material and understanding its underlying mechanism. Here, the aim is to summarize the recent experimental and computational research progress in the modification of MnO single species by morphology control, structure construction, facet engineering, and element doping. Moreover, the design and fabrication of MnO -based composites via the construction of homojunctions and MnO /semiconductor/conductor binary/ternary heterojunctions is discussed. Their applications in environmental purification systems, either as an adsorbent material for removing heavy metals, dyes, and microwave (MW) pollution, or as a thermal catalyst, photocatalyst, and electrocatalyst for the degradation of pollutants (water and gas, organic and inorganic) are also highlighted. Finally, the research gaps are summarized and a perspective on the challenges and the direction of future research in nanostructured MnO -based materials in the field of environmental applications is presented. Therefore, basic guidance for rational design and fabrication of high-efficiency MnO -based materials for comprehensive environmental applications is provided.

摘要

二氧化锰(MnO₂)因其具有多种优良特性,是一种在环境应用方面颇具潜力的光热电响应半导体材料。然而,这种材料不尽人意的环境净化效率限制了其进一步应用。幸运的是,在过去几年中,人们为提高这种材料的环境净化效率并理解其潜在机制付出了巨大努力。在此,目的是总结通过形貌控制、结构构建、晶面工程和元素掺杂对MnO₂单一组分进行改性的近期实验和计算研究进展。此外,还讨论了通过构建同质结以及MnO₂/半导体/导体二元/三元异质结来设计和制备MnO₂基复合材料。还重点介绍了它们在环境净化系统中的应用,既可以作为去除重金属、染料和微波(MW)污染的吸附材料,也可以作为热催化剂、光催化剂和电催化剂用于降解污染物(水和气体、有机和无机污染物)。最后,总结了研究差距,并对环境应用领域中纳米结构MnO₂基材料的未来研究挑战和方向提出了展望。因此,为合理设计和制备用于综合环境应用的高效MnO₂基材料提供了基本指导。

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