Progress and obstacles in electrode materials for lithium-ion batteries: a journey towards enhanced energy storage efficiency

IF 4.6 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
RSC Advances Pub Date : 2025-05-14 DOI:10.1039/D5RA02042E
Rimsha Khalid, Afzal Shah, Mohsin Javed and Hazrat Hussain
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Abstract

This review critically examines various electrode materials employed in lithium-ion batteries (LIBs) and their impact on battery performance. It highlights the transition from traditional lead-acid and nickel–cadmium batteries to modern LIBs, emphasizing their energy density, efficiency, and longevity. It primarily focuses on cathode materials, including LiMn2O4, LiCoO2, and LiFePO4, while also exploring emerging materials such as organosulfides, nanomaterials, and transition metal oxides & sulfides. It also presents an overview of the anode materials based on their mechanism, e.g., intercalation–deintercalation, alloying, and conversion-type anode materials. The strengths, limitations, and synthesis techniques associated with each material are discussed. This review also delves into cathode materials, such as soft and hard carbon and high-nickel systems, assessing their influence on storage performance. Additionally, the article addresses safety concerns, recycling strategies, environmental impact evaluations, and disposal practices. It highlights emerging trends in the development of electrode materials, focusing on potential solutions and innovations. This comprehensive review provides an overview of current lithium-ion battery technology, identifying technical challenges and opportunities for advancement to promote efficient, sustainable, and environmentally responsible energy storage solutions. This review also examines the issues confronting lithium-ion batteries, including high production costs, scarcity of materials, and safety risks, with suggestions to address them through doping, coatings, and incorporation of nanomaterials.

Abstract Image

锂离子电池电极材料的进展与障碍:提高储能效率之旅
本文综述了锂离子电池(LIBs)中使用的各种电极材料及其对电池性能的影响。它强调了从传统的铅酸和镍镉电池到现代锂电池的过渡,强调了它们的能量密度、效率和寿命。它主要关注正极材料,包括LiMn2O4、LiCoO2和LiFePO4,同时也探索新兴材料,如有机硫化物、纳米材料和过渡金属氧化物。硫化物。它还介绍了基于其机理的阳极材料的概述,例如插脱插、合金化和转换型阳极材料。讨论了每种材料的优势、局限性和合成技术。本文还深入研究了正极材料,如软、硬碳和高镍系统,评估了它们对存储性能的影响。此外,本文还讨论了安全问题、回收策略、环境影响评估和处置实践。它突出了电极材料发展的新趋势,重点是潜在的解决方案和创新。这篇全面的综述概述了当前的锂离子电池技术,确定了技术挑战和发展机遇,以促进高效、可持续和对环境负责的储能解决方案。本文还研究了锂离子电池面临的问题,包括生产成本高、材料稀缺和安全风险,并提出了通过掺杂、涂层和纳米材料掺入来解决这些问题的建议。
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
RSC Advances
RSC Advances chemical sciences-
CiteScore
7.50
自引率
2.60%
发文量
3116
审稿时长
1.6 months
期刊介绍: An international, peer-reviewed journal covering all of the chemical sciences, including multidisciplinary and emerging areas. RSC Advances is a gold open access journal allowing researchers free access to research articles, and offering an affordable open access publishing option for authors around the world.
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