立体光刻
材料科学
电解质
制作
纳米技术
3D打印
电池(电)
储能
陶瓷
聚合物
锂(药物)
多孔性
能量密度
快离子导体
可扩展性
沉积(地质)
超级电容器
墨水池
聚合物电解质
电镀
金属锂
保形涂层
出处
期刊:Small
[Wiley]
日期:2026-08-05
卷期号:: e75040-e75040
摘要
ABSTRACT Solid‐state and quasi‐solid‐state lithium metal batteries are widely regarded as a promising solution to overcome the energy density and safety limitations of conventional lithium‐ion technology. However, their practical implementation is critically hindered by the lack of scalable manufacturing strategies capable of producing thin, uniform, and lithium‐compatible solid (or gel polymer) electrolyte layers with excellent interfacial contact. Here, a paradigm shift is demonstrated by using stereolithography (SLA) 3D printing to directly print a ready‐to‐use gel polymer electrolyte without any post‐processing. The proposed approach enables the fabrication of dense, nonporous electrolyte layers with precisely controlled thickness and conformal deposition onto substrates such as lithium metal and LiFePO 4 cathodes. Unlike previously reported SLA‐based strategies limited to ceramic precursors or sacrificial templates, the printed electrolyte is immediately functional and compatible with battery assembly. This area‐parallel, solvent‐free manufacturing route offers intrinsic scalability and eliminates material waste associated with conventional processing methods. Beyond the specific demonstrations reported here, the printing procedure provides a versatile platform adaptable to other polymer electrolytes and polymer–inorganic composites, opening new opportunities for additive manufacturing of advanced energy storage devices.
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