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基于硝酰自由基接枝空心碳球的具有高压敏和应变敏层的柔性压力传感器。

Flexible pressure sensors with a highly pressure- and strain-sensitive layer based on nitroxyl radical-grafted hollow carbon spheres.

作者信息

Chu Jie, Cai Jueping

机构信息

School of Microelectronics, State Key Discipline Laboratory of Wide Band Gap Semiconductor Technology, Xidian University, Xi'an, 710071, China.

出版信息

Nanoscale. 2020 May 7;12(17):9375-9384. doi: 10.1039/d0nr01192d.

DOI:10.1039/d0nr01192d
PMID:32347281
Abstract

The spherical structure of hollow carbon spheres (HCSs) makes their contact resistance and tunnel resistance extremely sensitive to the distance between them, which can be used as a conductive filler for high-sensitivity pressure sensors. Compared with one- and two-dimensional carbon-based materials, HCSs require a higher filling concentration for constructing an effective conductive network due to their average conductivity, which affects the mechanical properties of the sensor. In a single-electron system, electrons are transferred by hopping between the nitroxyl radical monomers and when the distance between the monomers is shortened, the electron transfer rate of nitroxyl radical compounds can be increased, thus further improving their conductivity. In this work, a composite of nitroxyl radical-modified hollow carbon spheres (HCS-g-NO˙) and polydimethylsiloxane (PDMS) polymer is introduced, and the resistivity of HCS-g-NO˙ is about one magnitude lower than that of HCSs at the same filling concentration. A flexible piezoresistive sensor with HCS-g-NO˙@PDMS as the sensitive layer coated on the PET electrode is presented, in which the spacing between HCS-g-NO˙ changes, causing changes in the contact and tunnel resistances in the sensitive layer when mechanical stresses are applied. The sensor achieved a piezoresistive response of -0.55 kPa-1 and the tensile response of 211 , and a sensor array of nine pixels was successfully demonstrated; thus, it can be used as a high sensitivity pressure and strain sensor.

摘要

空心碳球(HCSs)的球形结构使其接触电阻和隧道电阻对它们之间的距离极为敏感,这使其可作为高灵敏度压力传感器的导电填料。与一维和二维碳基材料相比,由于HCSs的平均电导率,构建有效导电网络需要更高的填充浓度,这会影响传感器的机械性能。在单电子系统中,电子通过在硝酰自由基单体之间跳跃进行转移,当单体之间的距离缩短时,硝酰自由基化合物的电子转移速率会增加,从而进一步提高其电导率。在这项工作中,引入了硝酰自由基修饰的空心碳球(HCS-g-NO˙)与聚二甲基硅氧烷(PDMS)聚合物的复合材料,在相同填充浓度下,HCS-g-NO˙的电阻率比HCSs低约一个数量级。提出了一种以HCS-g-NO˙@PDMS为敏感层涂覆在PET电极上的柔性压阻传感器,其中施加机械应力时,HCS-g-NO˙之间的间距发生变化,导致敏感层中的接触电阻和隧道电阻发生变化。该传感器实现了-0.55 kPa-1的压阻响应和211的拉伸响应,并成功展示了一个由九个像素组成的传感器阵列;因此,它可作为高灵敏度压力和应变传感器。

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