Ma Yuan, Wang Sen, Wu Zhong-Shuai
State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, 116023, People's Republic of China.
University of Chinese Academy of Sciences, Beijing, 100049, People's Republic of China.
Nanomicro Lett. 2025 Jan 8;17(1):105. doi: 10.1007/s40820-024-01625-9.
Microbatteries (MBs) are crucial to power miniaturized devices for the Internet of Things. In the evolutionary journey of MBs, fabrication technology emerges as the cornerstone, guiding the intricacies of their configuration designs, ensuring precision, and facilitating scalability for mass production. Photolithography stands out as an ideal technology, leveraging its unparalleled resolution, exceptional design flexibility, and entrenched position within the mature semiconductor industry. However, comprehensive reviews on its application in MB development remain scarce. This review aims to bridge that gap by thoroughly assessing the recent status and promising prospects of photolithographic microfabrication for MBs. Firstly, we delve into the fundamental principles and step-by-step procedures of photolithography, offering a nuanced understanding of its operational mechanisms and the criteria for photoresist selection. Subsequently, we highlighted the specific roles of photolithography in the fabrication of MBs, including its utilization as a template for creating miniaturized micropatterns, a protective layer during the etching process, a mold for soft lithography, a constituent of MB active component, and a sacrificial layer in the construction of micro-Swiss-roll structure. Finally, the review concludes with a summary of the key challenges and future perspectives of MBs fabricated by photolithography, providing comprehensive insights and sparking research inspiration in this field.
微电池对于为物联网的小型化设备供电至关重要。在微电池的发展历程中,制造技术成为基石,指导其结构设计的复杂性,确保精度,并促进大规模生产的可扩展性。光刻技术脱颖而出,成为一项理想技术,它利用其无与伦比的分辨率、卓越的设计灵活性以及在成熟半导体行业中的稳固地位。然而,关于其在微电池开发中的应用的全面综述仍然很少。本综述旨在通过全面评估用于微电池的光刻微制造的最新状况和前景来弥补这一差距。首先,我们深入探讨光刻的基本原理和逐步程序,对其操作机制和光刻胶选择标准进行细致入微的理解。随后,我们强调了光刻在微电池制造中的具体作用,包括其作为创建小型微图案的模板、蚀刻过程中的保护层、软光刻的模具、微电池活性成分的组成部分以及微瑞士卷结构构建中的牺牲层的用途。最后,综述总结了通过光刻制造的微电池的关键挑战和未来前景,提供了该领域的全面见解并激发了研究灵感。