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超薄高柔韧性超轻陶瓷温度传感器阵列

Ultrathin Highly Flexible Featherweight Ceramic Temperature Sensor Arrays.

作者信息

Nakajima Tomohiko, Tsuchiya Tetsuo

机构信息

Advanced Coating Technology Research Center, National Institute of Advanced Industrial Science and Technology, Tsukuba Central 5, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8565, Japan.

出版信息

ACS Appl Mater Interfaces. 2020 Aug 12;12(32):36600-36608. doi: 10.1021/acsami.0c08718. Epub 2020 Jul 28.

Abstract

We fabricated highly flexible Sr- and Ni-doped perovskite SmMnO thermistor film sensor arrays on an ultrathin (5 μm thick) and lightweight (21 mg) polyimide sheet for healthcare monitoring devices. The Ag nanowire and nanoparticle-impregnated carbon microcone array, which was prepared by precisely controlled surface laser carbonization of polyimide, showed sufficiently low resistance as a bottom electrode and good stability against sharp bending angles. The dot-shaped (diameter: 900 μm) perovskite thermistor film with a thickness of 900 nm was crystallized by pulsed ultraviolet laser irradiation of a precursor film printed with perovskite nanoparticle dispersion ink, and the film functioned well as the thermistor with a thermistor constant of 2820 K. The thermistor sensor sheet exhibited rapid responses to temperature variation and high stability in the temperature cycle tests over 1000 cycles between room temperature and 80 °C. The bending durability for a bending angle of 60° with a small bending radius (500 μm) was also high. During the bending test over 1000 cycles, the monitoring temperature variation was suppressed only within 0.1 °C. This ultrathin sensor array sheet can be mounted on surfaces with shape variations, and we used the sensor for real-time monitoring in healthcare to detect precise temperature variations on the human skin during physical exercise.

摘要

我们在超薄(5μm厚)且轻质(21mg)的聚酰亚胺片材上制备了用于医疗监测设备的高度柔性的掺锶和镍的钙钛矿型SmMnO热敏电阻薄膜传感器阵列。通过对聚酰亚胺进行精确控制的表面激光碳化制备的银纳米线和纳米颗粒浸渍的碳微锥阵列,作为底部电极显示出足够低的电阻以及对急剧弯曲角度具有良好的稳定性。通过对印刷有钙钛矿纳米颗粒分散墨水的前驱体薄膜进行脉冲紫外激光辐照,使直径为900μm、厚度为900nm的点状钙钛矿热敏电阻薄膜结晶,该薄膜作为热敏电阻性能良好,热敏电阻常数为2820K。热敏电阻传感器片在室温至80°C之间的1000次温度循环测试中对温度变化表现出快速响应和高稳定性。对于60°弯曲角度、小弯曲半径(500μm)的弯曲耐久性也很高。在1000次循环的弯曲测试中,监测到的温度变化仅在0.1°C以内。这种超薄传感器阵列片可以安装在形状各异的表面上,我们将该传感器用于医疗保健中的实时监测,以检测体育锻炼期间人体皮肤上的精确温度变化。

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