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超氧离子:生成及其化学意义

Superoxide Ion: Generation and Chemical Implications.

作者信息

Hayyan Maan, Hashim Mohd Ali, AlNashef Inas M

机构信息

Department of Chemical and Environmental Engineering, Masdar Institute of Science and Technology , Abu Dhabi, United Arab Emirates.

出版信息

Chem Rev. 2016 Mar 9;116(5):3029-85. doi: 10.1021/acs.chemrev.5b00407. Epub 2016 Feb 15.

Abstract

Superoxide ion (O2(•-)) is of great significance as a radical species implicated in diverse chemical and biological systems. However, the chemistry knowledge of O2(•-) is rather scarce. In addition, numerous studies on O2(•-) were conducted within the latter half of the 20th century. Therefore, the current advancement in technology and instrumentation will certainly provide better insights into mechanisms and products of O2(•-) reactions and thus will result in new findings. This review emphasizes the state-of-the-art research on O2(•-) so as to enable researchers to venture into future research. It comprises the main characteristics of O2(•-) followed by generation methods. The reaction types of O2(•-) are reviewed, and its potential applications including the destruction of hazardous chemicals, synthesis of organic compounds, and many other applications are highlighted. The O2(•-) environmental chemistry is also discussed. The detection methods of O2(•-) are categorized and elaborated. Special attention is given to the feasibility of using ionic liquids as media for O2(•-), addressing the latest progress of generation and applications. The effect of electrodes on the O2(•-) electrochemical generation is reviewed. Finally, some remarks and future perspectives are concluded.

摘要

超氧离子(O2(•-))作为一种涉及多种化学和生物系统的自由基物种具有重要意义。然而,关于O2(•-)的化学知识相当匮乏。此外,20世纪后半叶开展了大量关于O2(•-)的研究。因此,当前技术和仪器的进步必将为深入了解O2(•-)反应的机制和产物提供更好的视角,从而带来新的发现。本综述着重介绍了O2(•-)的前沿研究,以便研究人员开展未来的研究。它包括O2(•-)的主要特性以及生成方法。综述了O2(•-)的反应类型,并突出了其潜在应用,包括有害化学品的销毁、有机化合物的合成以及许多其他应用。还讨论了O2(•-)的环境化学。对O2(•-)的检测方法进行了分类和阐述。特别关注了使用离子液体作为O2(•-)介质的可行性,介绍了生成和应用方面的最新进展。综述了电极对O2(•-)电化学生成的影响。最后得出了一些评论和未来展望。

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