Highly Ordered 3D Microstructure-Based Electronic Skin Capable of Differentiating Pressure, Temperature, and Proximity

电子皮肤 材料科学 压阻效应 电容感应 微流控 微观结构 压力传感器 灵敏度(控制系统) 光电子学 数码产品 纳米技术 电子工程 计算机科学 复合材料 机械工程 电气工程 操作系统 工程类
作者
Jin‐Oh Kim,Se Young Kwon,Youngsoo Kim,Han Byul Choi,Jun Chang Yang,Jinwon Oh,Hyeon Seok Lee,Joo Yong Sim,Seunghwa Ryu,Steve Park
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:11 (1): 1503-1511 被引量:124
标识
DOI:10.1021/acsami.8b19214
摘要

Electronic skin are devices that mimic the functionalities of human skin, which require high sensitivity, large dynamic range, high spatial uniformity, low-cost and large-area processability, and the capacity to differentiate various external inputs. We herein introduce a versatile droplet-based microfluidic-assisted emulsion self-assembly process to generate three-dimensional microstructure-based high-performance capacitive and piezoresistive pressure sensors for electronic skin applications. Our technique can generate uniformly sized micropores that are self-assembled in an orderly close-packed manner over a large area, which results in high spatial uniformity. The size of the micropores can easily be tuned from 100 to 500 μm, through which sensitivity and dynamic range were controlled as high as 0.86 kPa-1 and up to 100 kPa. Our device can be printed on curvilinear surfaces and be molded into various shapes. We furthermore demonstrate that by simultaneously utilizing capacitive and piezoresistive pressure sensors, we can distinguish between pressure and temperature, or between pressure and proximity. These demonstrations make our process and sensors highly useful for a wide variety of electronic skin applications.
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