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全印刷式、高灵敏度多功能人工电子触须阵列,集成应变和温度传感器。

Fully printed, highly sensitive multifunctional artificial electronic whisker arrays integrated with strain and temperature sensors.

机构信息

Department of Physics and Electronics, Osaka Prefecture University , Sakai, Osaka 599-8531, Japan.

出版信息

ACS Nano. 2014 Apr 22;8(4):3921-7. doi: 10.1021/nn500845a. Epub 2014 Mar 4.

Abstract

Mammalian-mimicking functional electrical devices have tremendous potential in robotics, wearable and health monitoring systems, and human interfaces. The keys to achieve these devices are (1) highly sensitive sensors, (2) economically fabricated macroscale devices on flexible substrates, and (3) multifunctions beyond mammalian functions. Although highly sensitive artificial electronic devices have been reported, none have been fabricated using cost-effective macroscale printing methods and demonstrate multifunctionalities of artificial electronics. Herein we report fully printed high-sensitivity multifunctional artificial electronic whiskers (e-whisker) integrated with strain and temperature sensors using printable nanocomposite inks. Importantly, changing the composition ratio tunes the sensitivity of strain. Additionally, the printed temperature sensor array can be incorporated with the strain sensor array beyond mammalian whisker functionalities. The sensitivity for the strain sensor is impressively high (∼59%/Pa), which is the best sensitivity reported to date (>7× improvement). As the proof-of-concept for a truly printable multifunctional artificial e-whisker array, two- and three-dimensional space and temperature distribution mapping are demonstrated. This fully printable flexible sensor array should be applicable to a wide range of low-cost macroscale electrical applications.

摘要

哺乳动物仿生功能电子设备在机器人技术、可穿戴和健康监测系统以及人机界面方面具有巨大的潜力。实现这些设备的关键在于:(1)高灵敏度传感器;(2)在柔性基板上经济地制造宏观器件;(3)具有超越哺乳动物功能的多功能性。尽管已经报道了高灵敏度的人工电子设备,但它们都没有使用具有成本效益的宏观打印方法制造,并且也没有展示人工电子的多功能性。在此,我们报告了使用可打印的纳米复合油墨集成应变和温度传感器的全印刷高灵敏度多功能人工电子触须(e-whisker)。重要的是,通过改变组成比例可以调整应变传感器的灵敏度。此外,打印的温度传感器阵列可以与应变传感器阵列结合,从而实现超越哺乳动物触须功能。应变传感器的灵敏度非常高(约 59%/Pa),这是迄今为止报道的最佳灵敏度(提高了 7 倍以上)。作为真正可打印的多功能人工 e-whisker 阵列的概念验证,我们演示了二维和三维空间以及温度分布的映射。这种全印刷的柔性传感器阵列应该适用于广泛的低成本宏观电气应用。

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