Ferrites and ferrite-based composites for energy conversion and storage applications

IF 8.1 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Khadijat Olabisi Abdulwahab, Mohammad Mansoob Khan, James Robert Jennings
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引用次数: 0

Abstract

AbstractFerrites and ferrite-based composites are known for their fascinating magnetic properties, varied redox chemistry, good stability, and excellent catalytic properties, all of which make them useful for a growing range of energy-related applications. The present review provides a concise summary of the basic properties of ferrites, an overview of the applicable synthetic methods, and recent advances related to the application of ferrites and ferrite-based composites in photoelectrochemical cells, photocatalytic CO2 reduction, batteries, supercapacitors, and microbial fuel cells. Special emphasis is placed on materials prepared by modern techniques, including microwave-assisted synthesis, ultrasound-assisted and sonochemical methods, synthesis employing metal-organic framework precursors, and electrospinning methods. The effects of intrinsic magnetism and external magnetic fields on the efficiency of ferrites in selected energy applications are also highlighted. The review concludes with a future outlook for the field that proffers solutions to issues currently hindering the effective utilization of ferrites and ferrite-based composites in energy conversion and storage applications.HighlightsOverview of the preparation and electrochemical energy applications of ferrites and ferrite-based compositesRecent applications of ferrites in photoelectrochemical cells, photocatalytic CO2 reduction, batteries, supercapacitors, and microbial fuel cellsEffect of magnetism and external magnetic fields on the synthesis and electrochemical applications of ferritesKeywords: Ferritesbatteriessupercapacitorsphotoelectrochemical cellsmicrobial fuel cells Disclosure statementThe authors declare that there are no conflicts of interest.Additional informationFundingThis research was funded by Universiti Brunei Darussalam through grants UBD/RSCH/1.4/FICBF(b)/2021/035 and UBD/RSCH/URC/NIG/8.0/2021/001, and by the Islamic Development Bank (IsDB) through provision of a post-doctoral scholarship to Dr Khadijat Abdulwahab (IsDB reference no. SCHD-277).
用于能量转换和存储的铁氧体和铁氧体基复合材料
摘要铁氧体和铁氧体基复合材料以其迷人的磁性、多样的氧化还原化学、良好的稳定性和优异的催化性能而闻名,这些都使它们在越来越多的能源相关应用中发挥着重要作用。本文简要介绍了铁氧体的基本性质、适用的合成方法,以及铁氧体和铁氧体基复合材料在光电化学电池、光催化CO2还原、电池、超级电容器和微生物燃料电池等方面的应用进展。特别强调了用现代技术制备的材料,包括微波辅助合成、超声辅助和声化学方法、金属有机框架前体合成和静电纺丝方法。本文还重点讨论了本征磁场和外加磁场对铁氧体在特定能量应用中效率的影响。最后,对该领域的未来前景进行了展望,提出了目前阻碍铁氧体和铁氧体基复合材料在能量转换和存储应用中有效利用的问题的解决方案。重点:铁氧体及铁氧体基复合材料的制备及电化学能源应用综述铁氧体在光电化学电池、光催化CO2还原、电池、超级电容器、微生物燃料电池等领域的研究进展磁性和外磁场对铁氧体合成及电化学应用的影响铁氧体电池超级电容器光电化学电池微生物燃料电池公开声明作者声明不存在利益冲突。本研究由文莱达鲁萨兰国大学通过赠款UBD/RSCH/1.4/FICBF(b)/2021/035和UBD/RSCH/URC/NIG/8.0/2021/001资助,并由伊斯兰开发银行(IsDB)通过向Khadijat Abdulwahab博士提供博士后奖学金(IsDB参考号:schd - 277)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
22.10
自引率
2.80%
发文量
0
审稿时长
3 months
期刊介绍: Critical Reviews in Solid State and Materials Sciences covers a wide range of topics including solid state materials properties, processing, and applications. The journal provides insights into the latest developments and understandings in these areas, with an emphasis on new and emerging theoretical and experimental topics. It encompasses disciplines such as condensed matter physics, physical chemistry, materials science, and electrical, chemical, and mechanical engineering. Additionally, cross-disciplinary engineering and science specialties are included in the scope of the journal.
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