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一种用于模仿人类皮肤的基于MXene的多功能物理传感器(压力、应变和温度)的超灵敏大面积矩阵。

A remarkably ultra-sensitive large area matrix of MXene based multifunctional physical sensors (pressure, strain, and temperature) for mimicking human skin.

作者信息

Adepu Vivek, Mattela Venkat, Sahatiya Parikshit

机构信息

Department of Electrical and Electronics Engineering, Birla Institute of Technology and Science Pilani Hyderabad Campus, Hyderabad, 500078, India.

Ceremorphic, Inc., San Jose, California 95131, USA.

出版信息

J Mater Chem B. 2021 Jun 2;9(22):4523-4534. doi: 10.1039/d1tb00947h.

Abstract

Electronic skin has attracted a lot of interest in recent years due to its ability to mimic human skin and also its excellent conformability. Even though there are reports on electronic skin, the major issue that still needs to be resolved is achieving multifunctional sensing at the same time as ultra-high sensitivity. Hence, there is an immediate requirement to develop inexpensive, highly sensitive, and superior performance piezoresistive multifunctional sensors that mimic skin. Herein, an as synthesized pure MXene (Ti3C2Tx) colloidal solution was used to deposit a thin film on flexible polyurethane foam, forming a three-dimensional conductive network with an ultra-high sensitivity of ∼34.24 kPa-1 (1.477-3.185 kPa of applied pressure range) and an elevated gauge factor of ∼323.59 (5-20% of applied strain range). Further merits such as reproducibility, low cost, high scalability, and excellent stability after 2500 cycles imply the sturdiness of the fabricated device. The remarkable sensing efficiency can be attributed to the strong interaction of Ti3C2Tx and PU foam, the inherent 3D network of PU coupled with the excellent electrical properties of Ti3C2Tx, and the interconnection of the unconnected branches present in the internal framework of PU-foam, which indicates the existence of more conduction paths. Besides, the fabricated Ti3C2Tx was deposited on cellulose paper to be utilized as a temperature sensor which displayed ∼2.22 × 10-3 °C-1 TCR and 29.43 meV activation energy. Lastly, real time applications for the fabricated device are investigated including detecting an unknown position of an object and human gestures. The successful demonstration of the low-cost, flexible Ti3C2Tx based piezoresistive sensor has shown innovative applications in biomedical, security, educational, and health sectors.

摘要

近年来,电子皮肤因其能够模仿人类皮肤以及出色的贴合性而备受关注。尽管已有关于电子皮肤的报道,但仍需解决的主要问题是在实现超高灵敏度的同时达成多功能传感。因此,迫切需要开发出模仿皮肤的廉价、高灵敏度且性能卓越的压阻式多功能传感器。在此,使用一种合成的纯MXene(Ti3C2Tx)胶体溶液在柔性聚氨酯泡沫上沉积薄膜,形成一个三维导电网络,其具有约34.24 kPa-1的超高灵敏度(施加压力范围为1.477 - 3.185 kPa)和约323.59的高应变系数(施加应变范围为5 - 20%)。该器件还具有诸如可重复性、低成本、高可扩展性以及在2500次循环后仍具有出色稳定性等优点。卓越的传感效率可归因于Ti3C2Tx与聚氨酯泡沫的强相互作用、聚氨酯固有的三维网络与Ti3C2Tx优异的电学性能,以及聚氨酯泡沫内部框架中未连接分支的相互连接,这表明存在更多的导电路径。此外,将制备的Ti3C2Tx沉积在纤维素纸上用作温度传感器,其显示出约2.22×10-3 °C-1的电阻温度系数和29.43 meV的激活能。最后,研究了该制备器件的实时应用,包括检测物体的未知位置和人类手势。基于低成本、柔性Ti3C2Tx的压阻式传感器的成功演示已在生物医学、安全、教育和健康领域展示了创新应用。

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