材料科学
电化学储能
纳米技术
灵活性(工程)
储能
3D打印
能量密度
工艺工程
功率密度
电化学
电化学能量转换
工程物理
超级电容器
工程类
物理
冶金
统计
功率(物理)
数学
物理化学
化学
量子力学
电极
作者
Quanhai Zhang,Jiangqi Zhou,Zhihong Chen,Chao Xu,Wei Tang,Guangzhi Yang,Chunyan Lai,Qunjie Xu,Junhe Yang,Chengxin Peng
标识
DOI:10.1002/adem.202100068
摘要
Among the advanced additive manufacturing technologies, direct ink writing (DIW) technology is extensively utilized to fabricate various energy storage devices (i.e., batteries, supercapacitors [SCs], and solar cells) due to its excellent process flexibility, excellent geometric controllability, as well as relative low‐cost and efficient processes. DIW offers a convenient way to build 3D structures for energy storage devices and provide higher power density and energy density in comparison with traditional casting techniques. Herein, the recent advances in DIW for emerging energy storage devices, including SCs, lithium‐ion batteries, lithium–sulfur batteries, rechargeable lithium metal batteries, and solid‐state batteries, are emphasized and discussed. The significant achievements made developing printed energy storage devices, such as printing ink materials, designing the printing process, and the great progress in terms of the corresponding electrochemical performances, are also highlighted. Finally, the major challenges and potential research possibilities in 3D printing energy storage device are proposed. It can be expected that, as 3D printing technology develops, batteries and SCs with durable lifespans, favorable safety, as well as high energy density and power density will eventually be utilized in many fields.
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