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简便合成具有可控灵敏度的喷雾碳纳米管层嵌入可拉伸传感器

Facile Synthesis of Sprayed CNTs Layer-Embedded Stretchable Sensors with Controllable Sensitivity.

作者信息

Khalid Hammad R, Choudhry Iqra, Jang Daeik, Abbas Nadir, Haider M Salman, Lee H K

机构信息

Civil and Environmental Engineering Department, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.

Department of Civil and Environmental Engineering, KAIST, 291 Daehak-ro, Yuseong-gu, Daejoen 34141, Korea.

出版信息

Polymers (Basel). 2021 Jan 19;13(2):311. doi: 10.3390/polym13020311.

Abstract

Flexible electronic devices have gained significant interest due to their different potential applications. Herein, we report highly flexible, stretchable, and sensitive sensors made of sprayed CNT layer, sandwiched between two polymer layers. A facile fabrication process was employed in which the CNT solution was directly sprayed onto a patterned bottom polymer layer, above which a second polymer layer was casted to get a sandwiched composite structure. Varying amounts of CNT solution (i.e., 10, 25, 40, 70, and 100 mL) were sprayed to get conductive CNT layers of different thicknesses/densities. The physical characteristics of the conductive CNT layers were studied through SEM and optical images. The starting electrical resistance values (without strain) as well as the changes in electrical resistance against human body motions were monitored. The synthesized samples exhibited good response against finger and wrist bending. The conductivity of the samples increased with increase of CNT solution volume while the sensitivity followed the inverse relation, suggesting that the sensors with controlled sensitivity could be fabricated for targeted strain ranges using the proposed method.

摘要

柔性电子设备因其不同的潜在应用而备受关注。在此,我们报告了由喷涂碳纳米管层制成的高度柔性、可拉伸且灵敏的传感器,该碳纳米管层夹在两个聚合物层之间。采用了一种简便的制造工艺,即将碳纳米管溶液直接喷涂到图案化的底部聚合物层上,然后在其上浇铸第二层聚合物以获得夹心复合结构。喷涂不同量的碳纳米管溶液(即10、25、40、70和100毫升)以获得不同厚度/密度的导电碳纳米管层。通过扫描电子显微镜(SEM)和光学图像研究了导电碳纳米管层的物理特性。监测了初始电阻值(无应变时)以及电阻随人体运动的变化。合成的样品对手指和手腕弯曲表现出良好的响应。样品的电导率随碳纳米管溶液体积的增加而增加,而灵敏度则呈反比关系,这表明使用所提出的方法可以针对目标应变范围制造具有可控灵敏度的传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ce2/7835748/fef8771dbe2f/polymers-13-00311-g001.jpg

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