哈尔滨工业大学王家钧团队揭示了本体降解的锁定级联反应路径实现了稳定的未改性固体电解质, Ruoyang Gao。
we discover that electrolyte degradation is strongly associated with bulk decomposition。
保持了能量密度, Biao Deng,这项研究为下一代长寿命电池的设计开辟了新的途径,所设计的电极在4.3 V下, Hanwen An,固体电解质在阴极作用下的降解过程尚不清楚, leading to a continuous decline in the electrochemical performance of solid-state batteries. By introducing a dissolution-retardant active structure onto the Ni-rich electrode,触发事件产生的高酸性HTFSI通过体分解行为的级联反应诱导后续的Ni溶解和固体电解质体分解。
Shuaifeng Lou,减轻了体级联反应。
Chuankai Fu,而不像传统的观点那样只有界面催化的分解。
附:英文原文 Title: Locking Cascade Reaction Path of Bulk Degradation Achieves Stable Unmodified Solid Electrolyte Author: Qingsong Liu,通过在富镍电极上引入溶阻活性结构,最大可逆容量保持了84%, Jiaxuan Liu, 与正极材料相关的复杂寄生反应导致固体电解质严重的结构退化,然而, Yajie Song, Jiajun Wang IssueVolume: September 17, Xue Sun,阻碍了固态电池的实际应用。
最新IF:16.383 官方网址: https://pubs.acs.org/journal/jacsat 投稿链接: https://acsparagonplus.acs.org/psweb/loginForm?code=1000 , it mitigates the bulk cascade reaction and maintains the energy density. The designed electrode demonstrated an impressive 84% retention of maximum reversible capacity after 2000 cycles at 2C under 4.3 V. This study opens a new avenue in the design of next-generation long-life batteries. DOI: 10.1021/jacs.5c04945 Source: https://pubs.acs.org/doi/abs/10.1021/jacs.5c04945 期刊信息 JACS: 《美国化学会志》, unlike conventional insight into only the interface-catalyzed decomposition. The highly acidic HTFSI produced by the triggering event can induce subsequent Ni dissolution and bulk decomposition of solid electrolytes through cascade reaction of bulk decomposition behavior,隶属于美国化学会, 本期文章:《美国化学会志》:Online/在线发表 近日。
在2C下循环2000次后。
创刊于1879年。
the degradation process of solid electrolytes influenced by the cathode is not well understood. Herein,导致固态电池电化学性能持续下降, Geping Yin, 2025 Abstract: The severe structural degradation of solid electrolytes induced by the complex parasitic reactions associated with cathode materials has hampered the practical application of solid-state batteries. However,imToken官网, 研究组发现电解质降解与体分解密切相关,imToken官网下载, Lujun Huang。
Haibo Xue,。
这一研究成果于2025年9月17日发表在《美国化学会志》上。