微尺度化学
储能
纳米技术
变形
微系统
材料科学
灵活性(工程)
过程(计算)
平面的
计算机数据存储
计算机科学
机械工程
工程类
计算机硬件
物理
功率(物理)
数学教育
计算机图形学(图像)
操作系统
统计
量子力学
数学
计算机视觉
作者
Wenlan Zhang,Hongmei Tang,Yaping Yan,Jiachen Ma,Letícia M. M. Ferro,Leandro Merces,Daniil Karnaushenko,Daniil Karnaushenko,Oliver G. Schmidt,Minshen Zhu
标识
DOI:10.1021/acsaem.4c00702
摘要
Transforming thin films into high-order stacks has proven effective for robust energy storage in macroscopic configurations like cylindrical, prismatic, and pouch cells. However, the lack of tools at the submillimeter scales has hindered the creation of similar high-order stacks for micro- and nanoscale energy storage devices, a critical step toward autonomous intelligent microsystems. This Spotlight on Applications article presents recent advancements in micro-origami technology, focusing on shaping nano/micrometer-thick films into three-dimensional architectures to achieve folded or rolled structures for microscale energy storage devices. Micro-Swiss-rolls, created through a roll-up process actuated by inherent strain in multiple layer stacks, have been employed to develop on-chip microbatteries and microsupercapacitors with superior performance compared to their planar counterparts. The technology allows additional functionalities to be integrated into the same device using multifunctional materials. Despite significant progress, the key challenge for micro-origami technology in creating microscale energy storage devices lies in diversifying shape-morphing mechanisms to expand material choices, improve process reliability, and enhance reproducibility. Additionally, developing a universal microscale energy storage device that can cater to various tiny devices is intricate. Therefore, considering the integration of energy storage into final applications during the development phase is crucial. Micro-origami energy storage systems are poised to significantly impact the future of autonomous tiny devices, such as smart dust and microrobots.
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