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Temperature-dependent piezoresistivity in an MWCNT/epoxy nanocomposite temperature sensor with ultrahigh performance

机译:具有高性能的MWCNT /环氧树脂纳米复合温度传感器中与温度有关的压阻

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摘要

A temperature sensor was fabricated from a polymer nanocomposite with multi-walled carbon nanotube (MWCNT) as nanofiller (i.e., MWCNT/epoxy). The electrical resistance and temperature coefficient of resistance (TCR) of the temperature sensor were characterized experimentally. The effects of temperature (within the range 333-373 K) and MWCNT content (within the range 1-5 wt%) were investigated thoroughly. It was found that the resistance increases with increasing temperature and decreasing MWCNT content. However, the resistance change ratio related to the TCR increases with increasing temperature and MWCNT content. The highest value of TCR (0.021 K-1), which was observed in the case of 5 wt% MWCNT, is much higher than those of traditional metals and MWCNT-based temperature sensors. Moreover, the corresponding numerical simulation - conducted to explain the above temperature-dependent piezoresistivity of the nanocomposite temperature sensor - indicated the key role of a temperature-dependent tunneling effect.
机译:由具有多壁碳纳米管(MWCNT)作为纳米填料(即MWCNT /环氧树脂)的聚合物纳米复合材料制成温度传感器。实验表征了温度传感器的电阻和电阻温度系数(TCR)。彻底研究了温度(在333-373 K范围内)和MWCNT含量(在1-5 wt%范围内)的影响。发现电阻随温度升高和MWCNT含量降低而增加。然而,与TCR有关的电阻变化率随温度和MWCNT含量的增加而增加。在5wt%MWCNT的情况下观察到的TCR的最大值(0.021 K-1)远高于传统金属和基于MWCNT的温度传感器。此外,进行了相应的数值模拟,以解释上述纳米复合温度传感器的压敏电阻率,该数值模拟表明了温敏隧穿效应的关键作用。

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