阳极
材料科学
阴极
纳米技术
金属锂
电解质
储能
电化学
电池(电)
硫化物
电化学储能
集电器
空隙(复合材料)
工作(物理)
相间
锂(药物)
重量分析
电流(流体)
高能
枝晶(数学)
能量密度
可扩展性
工艺工程
多硫化物
计算机科学
电化学电池
锂电池
新能源
作者
Mamta Sham Lal,Paul Albertus,Malachi Noked
出处
期刊:Small
[Wiley]
日期:2025-10-14
卷期号:21 (49): e10624-e10624
被引量:5
标识
DOI:10.1002/smll.202510624
摘要
Anode-less sulfide-based all-solid-state batteries (ASSBs) have emerged as promising candidates for next-generation energy storage, offering high energy density, enhanced safety, and simplified cell design. By eliminating excess lithium (Li) metal and relying solely on Li extracted from the cathode, these systems significantly improve gravimetric and volumetric performance. However, the absence of a Li reservoir introduces critical challenges, particularly at the Li|solid electrolyte (Li|SE) interface. This review first outlines the fundamental interfacial and electrochemical challenges in anode-less sulfide systems, including unstable Li plating/stripping, void formation, interfacial contact loss, and parasitic reactions that lead to poor reversibility and early failure. Drawing from recent experimental studies, the second part of this review discusses material and structural strategies developed to stabilize these systems. These include current collector modifications, lithiophilic and alloying interlayers, cathode prelithiation, and artificial interphase engineering, each aiming to suppress dendrite growth, enhance interfacial integrity, and manage Li inventory. The review concludes by highlighting future research directions and design principles essential for realizing scalable and commercially viable anode-less sulfide-based ASSBs. By critically evaluating the latest progress, this work aims to provide a comprehensive framework to guide the rational development of robust and high-performance solid-state battery architecture.
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