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为何聚合物将在固态电池竞争中胜出?

Why Will Polymers Win the Race for Solid-State Batteries?

作者信息

Li Zhiyong, Peng Sisi, Wei Lu, Guo Xin

机构信息

School of Materials Science and Engineering, State Key Laboratory of Material Processing and Die & Mould Technology, Huazhong University of Science and Technology, Wuhan, 430074, P. R. China.

Solid Ionic Power Technology (Wuhan) Co., Ltd., Wuhan, 430000, P. R. China.

出版信息

Adv Sci (Weinh). 2025 Sep;12(36):e10481. doi: 10.1002/advs.202510481. Epub 2025 Aug 7.

Abstract

Solid-state batteries (SSBs) promise to revolutionize energy storage by offering enhanced safety, higher energy density, and improved cycle lifespan over conventional lithium-ion batteries. Among the various solid electrolytes, polymers stand out for their unique combination of processability, mechanical compliance, and chemical versatility. This review explores why polymers are poised to lead the race toward commercial SSBs. Their intrinsic advantages-such as superior interfacial contact with electrodes, tunable ionic conductivity, and compatibility with scalable manufacturing methods-as well as the key technical challenges they face, including limited thermal stability, narrow electrochemical windows, and interfacial degradation, are examined. This study highlights emerging solutions from recent research, including polymer molecular design, polymer-ceramic composites, and in situ polymerization strategies. In contrast to oxide and sulfide systems, which face significant barriers in cost, manufacturability, and integration, polymer-based electrolytes offer a realistic and economically viable path to large-scale deployment. With continuing advances in materials design and industrial processing, polymers are not only competitive-they are leading the transition to next-generation solid-state batteries.

摘要

固态电池(SSB)有望通过提供比传统锂离子电池更高的安全性、更高的能量密度和更长的循环寿命来彻底改变储能领域。在各种固体电解质中,聚合物因其独特的可加工性、机械柔韧性和化学多功能性脱颖而出。本综述探讨了聚合物为何有望在商用固态电池的竞争中领先。研究了它们的固有优势,如与电极的优异界面接触、可调节的离子导电性以及与可扩展制造方法的兼容性,以及它们面临的关键技术挑战,包括热稳定性有限、电化学窗口狭窄和界面降解。本研究强调了近期研究中出现的解决方案,包括聚合物分子设计、聚合物-陶瓷复合材料和原位聚合策略。与在成本、可制造性和集成方面面临重大障碍的氧化物和硫化物体系不同,聚合物基电解质为大规模应用提供了一条现实且经济可行的途径。随着材料设计和工业加工的不断进步,聚合物不仅具有竞争力,而且正在引领向下一代固态电池的转型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1f0/12462936/7d7eca98d586/ADVS-12-e10481-g011.jpg

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