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Ion channel-based flexible temperature sensor with humidity insensitivity

机译:基于离子通道的柔性温度传感器,湿度不敏感

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摘要

We report an energy-efficient and mechanically durable temperature sensor with high selectivity and sensitivity. This sensor structure is inspired by ion channels in the cell membranes of living organisms that enable them to respond to temperature changes. For this purpose, a pore membrane and ionic solution are used for measuring the temperature based on the electrophoretic transport of ions. As the results indicate, we achieve a low consumption of power (8 mu W/mm(2)), high linearity (R 0.99), and a high temperature coefficient of resistance (0.022 degrees C-1) over the specified temperature range (20-70 degrees C). Our sensor intrinsically exhibits high selectivity to the humidity change and high signal stability to mechanical deformation. In addition, we also fabricate a flexible 3 x 3 matrix ion-channel-based temperature sensor, and demonstrate that it is capable of highly selective, sensitive, and flexible measurement (or area mapping) of the temperature over a specified area. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们报告了一种高选择性和灵敏度的节能和机械耐用的温度传感器。该传感器结构的灵感来自生物体的细胞膜中的离子通道,使它们能够响应温度变化。为此目的,孔膜和离子溶液用于根据离子的电泳传输来测量温度。结果表明,我们实现了低功耗(8μW/ mm(2)),高线性度(R> 0.99),以及在指定温度范围内的高温电阻系数(0.022摄氏度) (20-70℃)。我们的传感器本质上表现出对湿度变化和高信号稳定性的高选择性与机械变形。此外,我们还制造了柔性3×3矩阵离子通道的温度传感器,并证明它能够在指定区域的温度的高度选择性,灵敏度和柔性的测量(或面积映射)。 (c)2018年elestvier b.v.保留所有权利。

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