Fundamental properties, characterization techniques, and applications for photo(electro) catalysis: From Nanosized manganese oxides to manganese coordination compounds

IF 20.3 1区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR Coordination Chemistry Reviews Pub Date : 2024-12-18 DOI:10.1016/j.ccr.2024.216396
Mehdi Khosravi, Suleyman I. Allakhverdiev, Julian J. Eaton-Rye, Małgorzata Hołyńska, Eva-Mari Aro, Jian-Ren Shen, Mohammad Mahdi Najafpour
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Abstract

The excessive use of fossil fuels has led to significant environmental challenges, including global warming driven by carbon dioxide emissions and widespread air pollution. Essentially, focusing on sustainable and clean energy sources is necessary for the future of humanity and our planet. Through evolution, nature has solved this energy problem through the natural photosynthesis process. Manganese plays a crucial role in natural photosynthesis, specifically within the oxygen-evolving complex of photosystem II and therefore manganese has garnered significant interest for its potential use in catalytic, photocatalytic, and photoelectrochemical water oxidation, as well as in various other applications, due to its crucial role in natural photosynthesis. Therefore, This review focuses on the photocatalytic and photoelectrocatalytic properties of different manganese compounds and discusses various characterization techniques, with a special focus on electrochemical and photoelectrochemical methods used for assessing photoactive semiconductors. The primary goal of this text is to offer a comprehensive summary of the advancements in this area. Additionally, it sheds light on various approaches and strategies used in this field that could be applicable in related areas of interest. The review concludes with an outlook and final thoughts on the subject.

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光(电)催化的基本性质、表征技术和应用:从纳米锰氧化物到锰配位化合物
化石燃料的过度使用导致了重大的环境挑战,包括二氧化碳排放导致的全球变暖和广泛的空气污染。从本质上讲,关注可持续和清洁能源对人类和地球的未来是必要的。通过进化,大自然通过自然光合作用过程解决了这个能源问题。锰在自然光合作用中起着至关重要的作用,特别是在光系统II的氧进化复合体中。因此,由于锰在自然光合作用中的关键作用,它在催化、光催化、光电化学水氧化以及各种其他应用中的潜在用途引起了人们的极大兴趣。因此,本文将重点介绍不同锰化合物的光催化和光电催化性能,并讨论各种表征技术,特别关注用于评估光活性半导体的电化学和光电电化学方法。本文的主要目标是对这一领域的进展提供一个全面的总结。此外,它还阐明了在这一领域使用的各种方法和战略,这些方法和战略可以适用于相关的感兴趣领域。这篇评论最后对这个问题作了展望和最后的思考。
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来源期刊
Coordination Chemistry Reviews
Coordination Chemistry Reviews 化学-无机化学与核化学
CiteScore
34.30
自引率
5.30%
发文量
457
审稿时长
54 days
期刊介绍: Coordination Chemistry Reviews offers rapid publication of review articles on current and significant topics in coordination chemistry, encompassing organometallic, supramolecular, theoretical, and bioinorganic chemistry. It also covers catalysis, materials chemistry, and metal-organic frameworks from a coordination chemistry perspective. Reviews summarize recent developments or discuss specific techniques, welcoming contributions from both established and emerging researchers. The journal releases special issues on timely subjects, including those featuring contributions from specific regions or conferences. Occasional full-length book articles are also featured. Additionally, special volumes cover annual reviews of main group chemistry, transition metal group chemistry, and organometallic chemistry. These comprehensive reviews are vital resources for those engaged in coordination chemistry, further establishing Coordination Chemistry Reviews as a hub for insightful surveys in inorganic and physical inorganic chemistry.
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