制作
固态
材料科学
纳米技术
碳纤维
比例(比率)
工艺工程
工程物理
环境科学
工程类
复合材料
复合数
物理
病理
医学
替代医学
量子力学
作者
Christopher Doerrer,Michael Metzler,Guillaume Matthews,Junfu Bu,Dominic Spencer Jolly,Peter G. Bruce,Mauro Pasta,Patrick S. Grant
出处
期刊:
[Elsevier BV]
日期:2024-07-26
卷期号:2 (8): 100468-100468
被引量:16
标识
DOI:10.1016/j.device.2024.100468
摘要
In recent years, solid-state battery (SSB) performance has steadily improved with the use of sulfide solid electrolytes (SEs). However, most research has focused on small (diameter < 10 mm), thick (separator > 500 μm) pellet-type cells that use non-scalable manufacturing routes and yield a low cell energy density. Technical applications require thinner and larger sheet-type cells made by scalable techniques. We examine the applicability of a scalable layer-by-layer spray printing approach for manufacturing sheet-type SSB components. Sprayed sulfide SE separators with thickness as thin as 10 μm and high ionic conductivity of 1 mS cm −1 are fabricated, along with a sprayed composite cathode that delivered a capacity retention of 63% after 800 cycles. Finally, the flexibility of spray printing for process integration is demonstrated by the fabrication of an anode-free cell consisting of a sprayed Ag-C layer and a sprayed SE layer.
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