Progress of silicon dioxide as an anode material for next-generation lithium-ion batteries

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Silicon dioxide (SiO 2 ) has emerged as a highly promising anode candidate for next-generation electrochemical energy storage systems, owing to its facile synthesis and cost-effective production. Silicon dioxide (SiO 2 ) has emerged as a promising anode candidate for lithium-ion batteries, owing to its negligible volumetric expansion, superior cycling stability, and enhanced safety characteristics. Nevertheless, the practical implementation of SiO 2 as an anode material is constrained by critical limitations, including significant volumetric swelling during cycling and inherently low electrical conductivity. Through rational preparation and modification methods, these limitations can be effectively addressed, offering new opportunities for advancing lithium-ion battery technology. This review systematically overviews recent advancements in SiO 2 -based anode research, critically examines persistent challenges, and outlines emerging opportunities for future development in the field.
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Progress of silicon dioxide as an anode material for next-generation lithium-ion batteries | Authorea try { document.documentElement.classList.add('js'); } catch (e) { } var _gaq = _gaq || []; _gaq.push(['_setAccount', 'G-8VDV14Y67G']); _gaq.push(['_trackPageview']); (function() { var ga = document.createElement('script'); ga.type = 'text/javascript'; ga.async = true; ga.src = ('https:' == document.location.protocol ? 'https://ssl' : 'http://www') + '.google-analytics.com/ga.js'; var s = document.getElementsByTagName('script')[0]; s.parentNode.insertBefore(ga, s); })(); Skip to main content Preprints Collections Wiley Open Research IET Open Research Ecological Society of Japan All Collections About About Authorea FAQs Contact Us Quick Search anywhere Search for preprint articles, keywords, etc. Search Search ADVANCED SEARCH SCROLL This is a preprint and has not been peer reviewed. Data may be preliminary. 25 March 2025 V1 Latest version Share on Progress of silicon dioxide as an anode material for next-generation lithium-ion batteries Authors : Xuxu Fu 0009-0006-8552-3012 , Yanhua Teng [email protected] , Jinjie Song , Qiwen Hu , and Hanxu Li Authors Info & Affiliations https://doi.org/10.22541/au.174289158.81547029/v1 316 views 125 downloads Contents Abstract Supplementary Material Information & Authors Metrics & Citations View Options References Figures Tables Media Share Abstract Silicon dioxide (SiO 2 ) has emerged as a highly promising anode candidate for next-generation electrochemical energy storage systems, owing to its facile synthesis and cost-effective production. Silicon dioxide (SiO 2 ) has emerged as a promising anode candidate for lithium-ion batteries, owing to its negligible volumetric expansion, superior cycling stability, and enhanced safety characteristics. Nevertheless, the practical implementation of SiO 2 as an anode material is constrained by critical limitations, including significant volumetric swelling during cycling and inherently low electrical conductivity. Through rational preparation and modification methods, these limitations can be effectively addressed, offering new opportunities for advancing lithium-ion battery technology. This review systematically overviews recent advancements in SiO 2 -based anode research, critically examines persistent challenges, and outlines emerging opportunities for future development in the field. Supplementary Material File (2025.03.19.docx) Download 6.10 MB Information & Authors Information Version history V1 Version 1 25 March 2025 Copyright This work is licensed under a Non Exclusive No Reuse License. Keywords anode material battery materials electrochemical properties lithium-ion silicon dioxide Authors Affiliations Xuxu Fu 0009-0006-8552-3012 Anhui University of Science and Technology School of Materials Science and Engineering View all articles by this author Yanhua Teng [email protected] Anhui University of Science and Technology School of Materials Science and Engineering View all articles by this author Jinjie Song Anhui University of Science and Technology School of Materials Science and Engineering View all articles by this author Qiwen Hu Anhui University of Science and Technology School of Materials Science and Engineering View all articles by this author Hanxu Li Anhui University of Science and Technology School of Chemical and Blasting Engineering View all articles by this author Metrics & Citations Metrics Article Usage 316 views 125 downloads .FvxKWukQNSOunydq8rnd { width: 100px; } Citations Download citation Xuxu Fu, Yanhua Teng, Jinjie Song, et al. 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