Wang Jianli, Yu Hongmei, Walbert Torsten, Antoni Markus, Wang Cong, Xi Wei, Muench Falk, Yang Juekuan, Chen Yunfei, Ensinger Wolfgang
Jiangsu Key Laboratory for Design and Manufacture of Micro-Nano Biomedical Instruments, Department of Mechanical Engineering, Southeast University, Nanjing 210096, People's Republic of China.
Nanotechnology. 2019 Nov 8;30(45):455706. doi: 10.1088/1361-6528/ab37a7. Epub 2019 Aug 1.
Understanding the electrical and thermal transport properties of polycrystalline metallic nanostructures is of great interest for applications in microelectronics. In view of the diverse experimental results in polycrystalline metallic nanowires and nanofilms, it is a long-standing question whether their electrical and thermal properties can be well predicted by a practical model. By eliminating the effects of electrical and thermal contact resistances, we measure the electrical and thermal conductivities of three different polycrystalline Pt nanowires. The electron scattering at the surface is found to be diffusive, and the charge reflection coefficient at grain boundaries is proved to be a function of the melting point. The Lorenz number is observed to be suppressed from the free-electron value by about 30%, which can be explained by introducing a thermal reflection coefficient in calculating the thermal conductivity to account for the small angle scattering effect involving phonons at the grain boundaries. Using this model, both the electrical and thermal conductivities of the polycrystalline Pt nanowires are calculated at different diameters and temperatures.
了解多晶金属纳米结构的电输运和热输运特性对于微电子应用具有重要意义。鉴于多晶金属纳米线和纳米薄膜的实验结果多样,其电学和热学性质能否通过一个实用模型得到很好的预测,这是一个长期存在的问题。通过消除电接触电阻和热接触电阻的影响,我们测量了三种不同的多晶铂纳米线的电导率和热导率。发现表面的电子散射是扩散性的,并且晶界处的电荷反射系数被证明是熔点的函数。观察到洛伦兹数比自由电子值降低了约30%,这可以通过在计算热导率时引入热反射系数来解释,以考虑晶界处涉及声子的小角度散射效应。使用该模型,计算了不同直径和温度下多晶铂纳米线的电导率和热导率。