MXene ink printing of high-performance micro-supercapacitors

Yitong Wang, Yuhua Wang
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Abstract

The addition of two-dimensional MXene materials gives micro-supercapacitors (MSCs) the advantages of higher power density, faster charging and discharging speeds, and longer lifetimes. To date, various fabrication methods and strategies have been used to finely synthesize MXene electrodes. However, different technologies not only affect the electrode structure of MXene but also directly affect the performance of MSCs. Here, we provide a comprehensive and critical review of the design and microfabrication strategies for MXene's fork-finger microelectrodes. First, we provide a systematic overview of micromachining techniques applied to MXene, including graphic cutting, screen-printing, 3D printing, inkjet, and stamp methods. In addition, we discuss in detail the advantages and disadvantages of these machining techniques, summarizing the environment in which the technique is used and the results expected to be achieved. Finally, the challenges as well as the outlook for future applications are summarized to promote the further development of MXene materials in the field of MSCs.

Abstract Image

MXene 油墨印刷高性能微型超级电容器
添加了二维 MXene 材料的微型超级电容器(MSC)具有功率密度更高、充放电速度更快和寿命更长的优点。迄今为止,已有多种制造方法和策略用于精细合成 MXene 电极。然而,不同的技术不仅会影响 MXene 的电极结构,还会直接影响 MSC 的性能。在此,我们对 MXene 叉指状微电极的设计和微加工策略进行了全面而严谨的评述。首先,我们系统地概述了应用于 MXene 的微加工技术,包括图形切割、丝网印刷、三维打印、喷墨和印章方法。此外,我们还详细讨论了这些加工技术的优缺点,总结了技术的使用环境和预期效果。最后,我们总结了未来应用所面临的挑战和前景,以促进 MXene 材料在间充质干细胞领域的进一步发展。
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