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柔性平面微型超级电容器的激光加工:纳米结构电极先进制造的进展

Laser Processing of Flexible In-Plane Micro-supercapacitors: Progresses in Advanced Manufacturing of Nanostructured Electrodes.

作者信息

Liu Huilong, Sun Zhijian, Chen Yun, Zhang Wenjun, Chen Xin, Wong Ching-Ping

机构信息

State Key Laboratory of Precision Electronic Manufacturing Technology and Equipment & School of Electromechanical Engineering, Guangdong University of Technology, Guangzhou 510006, China.

Center of Super-Diamond and Advanced Films (COSDAF) & Department of Materials Science and Engineering, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong, China.

出版信息

ACS Nano. 2022 Jul 26;16(7):10088-10129. doi: 10.1021/acsnano.2c02812. Epub 2022 Jul 5.

Abstract

Flexible in-plane architecture micro-supercapacitors (MSCs) are competitive candidates for on-chip miniature energy storage applications owing to their light weight, small size, high flexibility, as well as the advantages of short charging time, high power density, and long cycle life. However, tedious and time-consuming processes are required for the manufacturing of high-resolution interdigital electrodes using conventional approaches. In contrast, the laser processing technique enables high-efficiency high-precision patterning and advanced manufacturing of nanostructured electrodes. In this review, the recent advances in laser manufacturing and patterning of nanostructured electrodes for applications in flexible in-plane MSCs are comprehensively summarized. Various laser processing techniques for the synthesis, modification, and processing of interdigital electrode materials, including laser pyrolysis, reduction, oxidation, growth, activation, sintering, doping, and ablation, are discussed. In particular, some special features and merits of laser processing techniques are highlighted, including the impacts of laser types and parameters on manufacturing electrodes with desired morphologies/structures and their applications on the formation of high-quality nanoshaped graphene, the selective deposition of nanostructured materials, the controllable nanopore etching and heteroatom doping, and the efficient sintering of nanometal products. Finally, the current challenges and prospects associated with the laser processing of in-plane MSCs are also discussed. This review will provide a useful guidance for the advanced manufacturing of nanostructured electrodes in flexible in-plane energy storage devices and beyond.

摘要

柔性面内结构微型超级电容器(MSCs)因其重量轻、尺寸小、柔韧性高,以及充电时间短、功率密度高和循环寿命长等优点,成为片上微型储能应用的有力候选者。然而,使用传统方法制造高分辨率叉指电极需要繁琐且耗时的工艺。相比之下,激光加工技术能够实现高效高精度的图案化以及纳米结构电极的先进制造。在这篇综述中,全面总结了用于柔性面内MSCs应用的纳米结构电极的激光制造和图案化方面的最新进展。讨论了用于叉指电极材料合成、改性和加工的各种激光加工技术,包括激光热解、还原、氧化、生长、活化、烧结、掺杂和烧蚀。特别强调了激光加工技术的一些特殊特性和优点,包括激光类型和参数对制造具有所需形貌/结构的电极的影响及其在高质量纳米形状石墨烯的形成、纳米结构材料的选择性沉积、可控纳米孔蚀刻和杂原子掺杂以及纳米金属产品的高效烧结方面的应用。最后,还讨论了与面内MSCs激光加工相关的当前挑战和前景。这篇综述将为柔性面内储能器件及其他领域的纳米结构电极的先进制造提供有益的指导。

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