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Experimental study on the in-plane thermal conductivity of Au nanofilms

机译:金纳米膜面内导热系数的实验研究

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The in-plane thermal conductivity of Au nanofilms with thickness of 23 nm, which are fabricated by the electron beam-physical vapor deposition method and a suspension technology, is experimentally measured at 80-300 K by a one-dimensional steady-state electrical heating method. Strong size effects are found on the measured nanofilm thermal conductivity. The Au nanofilm in-plane thermal conductivity is much less than that of the bulk material. With the increasing temperature, the nanofilm thermal conductivity increases. This is opposite to the temperature dependence of the bulk property. The Lorenz number of the Au nanofilms is about three times larger than the bulk value and decreases with the increasing temperature, which indicates the invalidity of the Wiedemann-Franz law for metallic nanofilms.
机译:通过电子束物理气相沉积法和悬浮技术制备的厚度为23 nm的Au纳米膜的面内导热率是通过一维稳态电加热在80-300 K上实验测量的方法。在测量的纳米膜热导率上发现强烈的尺寸效应。金纳米膜的面内热导率远低于块状材料。随着温度的升高,纳米膜的热导率增加。这与本体性质的温度依赖性相反。金纳米膜的洛伦兹数大约是体积值的三倍,并且随着温度的升高而降低,这表明维德曼-弗朗兹定律对金属纳米膜是无效的。

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