Lee Kilsoo, Lee Jaehong, Kim Gwangmook, Kim Youngjae, Kang Subin, Cho Sungjun, Kim SeulGee, Kim Jae-Kang, Lee Wooyoung, Kim Dae-Eun, Kang Shinill, Kim DaeEun, Lee Taeyoon, Shim Wooyoung
Department of Materials Science and Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-Gu, Seoul, 03722, Republic of Korea.
School of Electrical and Electronic Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-Gu, Seoul, 03722, Republic of Korea.
Small. 2017 Nov;13(43). doi: 10.1002/smll.201700368. Epub 2017 May 19.
Fabrication strategies that pursue "simplicity" for the production process and "functionality" for a device, in general, are mutually exclusive. Therefore, strategies that are less expensive, less equipment-intensive, and consequently, more accessible to researchers for the realization of omnipresent electronics are required. Here, this study presents a conceptually different approach that utilizes the inartificial design of the surface roughness of paper to realize a capacitive pressure sensor with high performance compared with sensors produced using costly microfabrication processes. This study utilizes a writing activity with a pencil and paper, which enables the construction of a fundamental capacitor that can be used as a flexible capacitive pressure sensor with high pressure sensitivity and short response time and that it can be inexpensively fabricated over large areas. Furthermore, the paper-based pressure sensors are integrated into a fully functional 3D touch-pad device, which is a step toward the realization of omnipresent electronics.
一般来说,追求生产过程“简单性”和设备“功能性”的制造策略是相互排斥的。因此,需要采用成本更低、设备需求更少、从而更便于研究人员实现普及型电子产品的策略。在此,本研究提出了一种概念上不同的方法,该方法利用纸张表面粗糙度的自然设计来实现一种电容式压力传感器,与使用昂贵的微制造工艺生产的传感器相比,具有高性能。本研究利用铅笔在纸上书写的活动,构建了一种基本电容器,它可以用作具有高压灵敏度和短响应时间的柔性电容式压力传感器,并且可以大面积低成本制造。此外,基于纸张的压力传感器被集成到一个全功能的3D触摸板设备中,这是迈向实现普及型电子产品的一步。