超级电容器
3D打印
数码产品
纳米技术
制作
墨水池
工程类
3d打印
熔融沉积模型
储能
印刷电子产品
快速成型
计算机科学
柔性电子器件
喷墨打印
制造工程
材料科学
电化学储能
作者
Zhenjiang Tan,Jian Meng,Yang Chen,Le Li,Tianxi Liu
标识
DOI:10.1002/admt.202501307
摘要
Abstract Advances in flexible electronics are driving a growing demand for supercapacitors with arbitrary shapes and customized functions. Conventional fabrication methods struggle to meet these requirements, whereas 3D printing offers precise, rapid, and cost‐effective manufacturing of complex architectures with broad material compatibility. This review provides a comprehensive overview of recent progress in 3D printing for supercapacitor applications. Four prevalent techniques, including direct ink writing, fused deposition modeling, inkjet printing, and vat photopolymerization are first examined, highlighting their operating principles, processing characteristics, and suitability for energy storage devices. Next, representative device architectures, including sandwich‐type, interdigitated, and fiber‐shaped configurations are discussed. Printable electrodes, electrolytes, and integrated strategies for achieving fully printed supercapacitors are then critically analyzed. Finally, current challenges are outlined and future research directions proposed, with the aim of advancing high‐performance 3D‐printed supercapacitors for next‐generation energy storage.
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