用于可持续能源和环境应用的机械合成电活性材料:重要综述

IF 33.6 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Progress in Materials Science Pub Date : 2024-04-16 DOI:10.1016/j.pmatsci.2024.101299
Zhijie Chen , Gao-Feng Han , Asif Mahmood , Jingwei Hou , Wei Wei , Ho Kyong Shon , Guoxiu Wang , T. David Waite , Jong-Beom Baek , Bing-Jie Ni
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引用次数: 0

摘要

电化学驱动的先进能源储存/转换和环境保护技术在实现可持续发展目标方面发挥着至关重要的作用。作为各种电化学系统中不可或缺的组成部分,电活性材料在合理设计和可持续合成方面备受关注。值得注意的是,基于机械化学的绿色强效合成方法具有可扩展性和可调性,已被广泛用于制造各种电活性材料。最近,机械化学合成的电活性材料被广泛应用于各种环境和能源领域,取得了重大进展。然而,对这些进展的系统分析仍然缺失。在此,我们将全面讨论可持续能源和环境应用领域机械合成电活性材料的最新成果。首先介绍了机械化学合成的发展,以及不同类型的机械合成电活性材料。随后,综述深入探讨了这些材料在先进能源转换/存储系统和环境修复中的应用。通过讨论机械化学过程对材料内部和外部特性及其电化学性能的影响,说明了电活性材料的合理设计及其结构-性能相关性。最后,还讨论了该领域的主要观点,包括机械化学过程监测、现场辅助机械化学合成、材料性能优化、实际应用以及机械化学驱动的燃料/化学品合成。本综述阐述了与机械合成电活性材料开发相关的当前进展和前景,旨在为即将开展的绿色机械化学合成驱动能源和环境可持续发展研究提供一些启示。
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Mechanosynthesized electroactive materials for sustainable energy and environmental applications: A critical review

Electrochemistry-driven techniques for advanced energy storage/conversion and environmental protection play a crucial role in achieving sustainable development goals. As an indispensable component in diverse electrochemical systems, electroactive materials gain soaring interest in terms of rational design and sustainable synthesis. Notably, mechanochemistry-based green and powerful synthesis has been widely employed to fabricate diverse electroactive materials, given their scalability and tunability. Recently, mechanochemically synthesized electroactive materials have been widely applied in various environmental and energy fields, leading to significant progress. However, a systematic analysis of these advancements is still missing. Herein, we comprehensively discuss recent achievements in mechanosynthesized electroactive materials for sustainable energy and environmental applications. The development of mechanochemical synthesis is introduced, along with different types of mechanosynthesized electroactive materials. Subsequently, the review delves into the applications of these materials in advanced energy conversion/storage systems and environmental remediation. The rational design of electroactive materials and their structure-performance correlation are illustrated by discussing the effects of the mechanochemical process on the internal and external properties of materials and their electrochemical performance. Lastly, key perspectives in this field are discussed, including mechanochemical process monitoring, field-assisted mechanochemical synthesis, material performance optimization, practical applications, and mechanochemistry-driven fuels/chemicals synthesis. By illustrating current advances and perspectives related to the development of mechanosynthesized electroactive materials, this review aims to shed some light on upcoming research on green mechanochemical synthesis-driven energy and environmental sustainability.

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来源期刊
Progress in Materials Science
Progress in Materials Science 工程技术-材料科学:综合
CiteScore
59.60
自引率
0.80%
发文量
101
审稿时长
11.4 months
期刊介绍: Progress in Materials Science is a journal that publishes authoritative and critical reviews of recent advances in the science of materials. The focus of the journal is on the fundamental aspects of materials science, particularly those concerning microstructure and nanostructure and their relationship to properties. Emphasis is also placed on the thermodynamics, kinetics, mechanisms, and modeling of processes within materials, as well as the understanding of material properties in engineering and other applications. The journal welcomes reviews from authors who are active leaders in the field of materials science and have a strong scientific track record. Materials of interest include metallic, ceramic, polymeric, biological, medical, and composite materials in all forms. Manuscripts submitted to Progress in Materials Science are generally longer than those found in other research journals. While the focus is on invited reviews, interested authors may submit a proposal for consideration. Non-invited manuscripts are required to be preceded by the submission of a proposal. Authors publishing in Progress in Materials Science have the option to publish their research via subscription or open access. Open access publication requires the author or research funder to meet a publication fee (APC). Abstracting and indexing services for Progress in Materials Science include Current Contents, Science Citation Index Expanded, Materials Science Citation Index, Chemical Abstracts, Engineering Index, INSPEC, and Scopus.
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