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固态电池的全面综述
A comprehensive review of solid-state batteries
| 作者 | Aniruddha Joshi · Dillip Kumar Mishr · Rajendra Singh · Jiangfeng Zhang · Yi Ding |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 386 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Review recent SSB technology advancements focusing on safety energy density and cycle life improvements. |
语言:
中文摘要
摘要 在20世纪的时代背景下,储能技术对于可再生能源的普及具有同等重要的意义。尽管锂离子电池技术已被研究多年,但一项重大突破——固态电池的发明——直到最近才出现。固态电池提供了更高的安全性、更高的能量密度以及更长的循环寿命。本文综述了固态电池技术当前的发展进展与现状,重点阐述了关键材料、电池结构和性能特征。我们分析了多种固态电解质材料、电极材料以及界面工程策略,以增强离子传输并抑制枝晶的形成。此外,还分析了电池退化的关键问题及其通过各种机制对生命周期造成的影响。随后,探讨了固态电池的充电特性。最后,本文指出了应对威胁固态电池商业化挑战的改进方向。这项全面的综述研究为监管机构、产业界专业人士以及参与开发具有高安全性、高性能和可持续性固态电池的学术研究人员提供了宝贵的见解。
English Abstract
Abstract In the era of the 20th century, energy storage technology is essentially as important as the penetration of renewable energy. Although Li-ion battery technology has been investigated for many years, a major breakthrough, the invention of solid-state batteries, has only recently arrived. It offers better safety, higher energy density , and improved cycle life. This paper reviews solid-state battery technology's current advancements and status, emphasizing key materials, battery architectures, and performance characteristics. We analyze various solid electrolyte materials, electrode materials, and interfacial engineering approaches to enhance ion transport and suppress dendrite formation. Furthermore, the critical aspect of battery degradation and its impact on the life cycle through various mechanisms are analyzed. Subsequently, the charging feature of solid-state batteries is explored. Finally, this paper gives the direction of improvements to the challenges threatening solid-state battery commercialization. This comprehensive review study offers valuable insights for regulators, industry professionals, and academics involved in developing a solid-state battery that promises safety, high performance, and sustainability.
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SunView 深度解读
固态电池技术对阳光电源储能系统具有战略价值。其高能量密度和安全性可显著提升PowerTitan等ESS产品竞争力,减少电芯热管理需求,优化ST系列PCS集成设计。固态电解质的抗枝晶特性可延长储能系统循环寿命,降低度电成本。建议在iSolarCloud平台集成固态电池健康状态监测算法,并评估其在充电桩储充一体化方案中的应用潜力,为下一代储能产品技术路线提供前瞻布局。