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首页> 外文期刊>Measurement Science & Technology >Estimation of temperature coefficient of resistance for microfabricated platinum thermometers in thermal conductivity measurements of one-dimensional nanostructures
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Estimation of temperature coefficient of resistance for microfabricated platinum thermometers in thermal conductivity measurements of one-dimensional nanostructures

机译:一维纳米结构热导率测量中的微型铂金温度计的电阻温度系数估计

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摘要

The suspended-microdevice method is widely used in thermal conductivity measurements of one-dimensional nanostructures, in which microfabricated platinum coils are used as thermometers to determine temperature rises of both the heat source and heat sink. The error in the estimated temperature coefficient of resistance (TCR) of thermometers usually dominates the total error in this measurement. In this paper, we compare different methods to calculate TCR of platinum resistance thermometers (PRT) in thermal conductivity measurement of an individual boron nanoribbon performed on the suspended-microdevice setup. Our results show that electrical resistances of PRTs deviate from the Bloch-Gruneisen formula due to the high defect and impurity concentration in the resistance thermometer. This deviation cannot be fully compensated by considering the interference between electron-phonon scattering and electron-impurity scattering. It is also shown that simple numerical differentiation can give an accurate TCR since the random error in the measured electrical resistance is small enough. High-order polynomial fitting can also work well except at the boundary of temperature range.
机译:悬浮微器件方法被广泛用于一维纳米结构的热导率测量,其中,将微细加工的铂金线圈用作温度计来确定热源和散热器的温度升高。温度计的估算电阻温度系数(TCR)中的误差通常会占该测量的总误差。在本文中,我们比较了在悬挂式微型设备设置中执行的单个硼纳米带的导热率测量中,计算铂电阻温度计(PRT)的TCR的不同方法。我们的结果表明,由于电阻温度计中的高缺陷和杂质浓度,PRT的电阻偏离了Bloch-Gruneisen公式。通过考虑电子-声子散射和电子杂质散射之间的干扰,不能完全补偿此偏差。还显示出简单的数值微分可以给出准确的TCR,因为被测电阻的随机误差足够小。高阶多项式拟合也可以很好地工作,除了在温度范围的边界。

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