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The experimental investigation of thermal conductivity and the Wiedemann–Franz law for single metallic nanowires

机译:单金属纳米线的热导率和Wiedemann-Franz定律的实验研究

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摘要

A new method for the measurement of thermal conductivity of electrically conducting single nanowires is presented. First experimental investigations are focused on the thermal conductivity of metallic Pt nanowires with a diameter of (typically) 100 nm and a length of 10 μm. Thermal conductivity data are compared with measurements of electrical conductivity in order to test the Wiedemann–Franz law for metallic nanowires. Compared to the bulk values at room temperature, electrical and thermal conductivities of the nanowire are decreased by a factor of 2.5 and 3.4, respectively. Consequently, the Lorenz number L = λ/σ T = 1.82 × 10~(-8) V~2 K~(-2) of the nanowire is smaller than the bulk Lorenz number Lbulk = (π2/3)(k/e)2 = 2.44 × 10~(-8) V~2 K~(-2) of metals. Furthermore, the temperature coefficient β of electrical resistivity is also reduced compared to the bulk value. These decreases of λ, σ and β can be attributed to size effects, mainly caused by grain boundary scattering of electrons.
机译:提出了一种测量导电单纳米线导热系数的新方法。最初的实验研究集中在直径为(通常)为100 nm,长度为10μm的金属Pt纳米线的热导率上。将热导率数据与电导率测量值进行比较,以测试金属纳米线的Wiedemann-Franz定律。与室温下的体积值相比,纳米线的电导率和导热率分别降低了2.5倍和3.4倍。因此,纳米线的洛伦兹数L =λ/σT = 1.82×10〜(-8)V〜2 K〜(-2)小于本体洛伦兹数Lbulk =(π2/ 3)(k / e )2 = 2.44×10〜(-8)V〜2 K〜(-2)金属。此外,与体积值相比,电阻率的温度系数β也减小。 λ,σ和β的这些减小可归因于尺寸效应,这主要是由于电子的晶界散射引起的。

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