基于 R2R 技术的图案化多层弹性基板与液态金属布线的连续生产,用于可拉伸电子产品

IF 6.4 3区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Advanced Materials Technologies Pub Date : 2024-06-09 DOI:10.1002/admt.202400487
Hiroki Kawakami, Kyohei Nagatake, Sijie Ni, Fumika Nakamura, Tamami Takano, Koki Murakami, Ibuki Ohara, Yuji Isano, Ryosuke Matsuda, Hideki Suwa, Ryunosuke Higashi, Moeka Kanto, Masato Saito, Hajime Fujita, Takuto Araki, Shingo Ozaki, Kazuhide Ueno, Tatsuhiro Horii, Toshinori Fujie, Hiroki Ota
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引用次数: 0

摘要

用于制造弹性基底的卷对卷(R2R)工艺对于社会上实现具有软界面的下一代可拉伸设备至关重要。近年来,对具有多种单片图案化有机材料的软异质结构的需求日益增长。然而,使用高拉伸布线图案化异质结构衬底的连续加工技术尚未开发出来。可拉伸电子器件的传统制造方法缺乏生产能力。本研究介绍了一种基于 R2R 的方法,用于连续生产由各种弹性材料组成的多层基板,并将其与液态金属(LM)布线集成,适用于可拉伸电子器件。利用三种硬度不同的聚合物,可实现聚合物薄膜的连续制造,图案面积小至 0.78 mm2。R2R 涂层工艺与液态金属布线点胶印刷相结合,可以制作出细至 140 微米的线路。该工艺支持一次批量生产 15 个可拉伸混合器件,并能制造出最大 400 平方厘米的大面积器件。本文开发的制造技术不仅有望在未来制造可拉伸电子器件,还有望制造智能包装等尖端软电子器件。这有望成为拉伸电子产品商业化的一个因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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R2R-Based Continuous Production of Patterned and Multilayered Elastic Substrates with Liquid Metal Wiring for Stretchable Electronics

The roll-to-roll (R2R) process for fabricating elastic substrates is essential for the social implementation of next-generation stretchable devices with soft interfaces. In recent years, there is a growing demand for soft heterostructures with multiple monolithically patterned organic materials. However, a continuous processing technique for substrates with heterostructures patterned using highly stretchable wiring has not yet been developed. Conventional manufacturing methods for stretchable electronics lack production capacity. This study introduces an R2R-based method for the continuous production of multilayered substrates composed of various elastic materials, integrated with liquid metal (LM) wiring, suitable for stretchable electronics. Continuous fabrication of polymer films is achieved with pattern areas as small as 0.78 mm2, using three different polymers varying in hardness. The R2R coating process, paired with liquid metal wiring dispensing printing, allows for the creation of lines as fine as 140 microns. This process supports the batch production of 15 stretchable hybrid devices at a time and enables the creation of large-area devices up to 400 cm2. The fabrication technique developed herein holds promise for the future manufacturing of not only stretchable electronics but also cutting-edge soft electronics like smart packaging. This is expected to be a factor leading to the commercialization of stretchable electronics.

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来源期刊
Advanced Materials Technologies
Advanced Materials Technologies Materials Science-General Materials Science
CiteScore
10.20
自引率
4.40%
发文量
566
期刊介绍: Advanced Materials Technologies Advanced Materials Technologies is the new home for all technology-related materials applications research, with particular focus on advanced device design, fabrication and integration, as well as new technologies based on novel materials. It bridges the gap between fundamental laboratory research and industry.
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