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使用平面印章进行小尺寸硅纳米薄膜的批量转移印刷

Batch Transfer Printing of Small-Size Silicon Nano-Films with Flat Stamp.

作者信息

Cao Wenping, Liu Guochang, Miao Jinwei, Zhang Guojun, Cui Jiangong, Yang Yuhua, He Changde, Zhang Wendong, Wang Renxin

机构信息

State Key Laboratory of Dynamic Testing Technology, North University of China, Taiyuan 030051, China.

出版信息

Micromachines (Basel). 2021 Oct 16;12(10):1255. doi: 10.3390/mi12101255.

Abstract

Silicon nano-film is essential for the rapidly developing fields of nanoscience and flexible electronics, due to its compatibility with the CMOS process. Viscoelastic PDMS material can adhere to Si, SiO, and other materials via intermolecular force and play a key role in flexible electronic devices. Researchers have studied many methods of transfer printing silicon nano-films based on PDMS stamps with pyramid microstructures. However, only large-scale transfer printing processes of silicon nano-films with line widths above 20 μm have been reported, mainly because the distribution of pyramid microstructures proposes a request on the size of silicon nano-films. In this paper, The PDMS base to the curing agent ratio affects the adhesion to silicon and enables the transfer, without the need for secondary alignment photolithography, and a flat stamp has been used during the transfer printing, with no requirement for the attaching pressure and detaching speed. Transfer printing of 20 μm wide structures has been realized, while the success rate is 99.3%. The progress is promising in the development of miniature flexible sensors, especially flexible hydrophone.

摘要

由于硅纳米薄膜与CMOS工艺的兼容性,它在迅速发展的纳米科学和柔性电子领域至关重要。粘弹性聚二甲基硅氧烷(PDMS)材料可通过分子间力粘附于硅、二氧化硅及其他材料,并在柔性电子器件中发挥关键作用。研究人员已研究了多种基于具有金字塔微结构的PDMS印章转移印刷硅纳米薄膜的方法。然而,目前仅报道了线宽大于20μm的硅纳米薄膜的大规模转移印刷工艺,主要是因为金字塔微结构的分布对硅纳米薄膜的尺寸提出了要求。在本文中,PDMS基体与固化剂的比例会影响其对硅的粘附力,并能实现转移,无需二次对准光刻,且在转移印刷过程中使用了平整的印章,对附着压力和分离速度均无要求。已实现了20μm宽结构的转移印刷,成功率为99.3%。这一进展在微型柔性传感器尤其是柔性水听器的发展中前景广阔。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53ec/8538986/086a7a2a8e16/micromachines-12-01255-g001.jpg

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