首页> 外文会议>International Conference on Thermoelectrics >Diffusion Thermopower Of Bismuth Nanowires And The Role Of Carrier's Boundary Scattering. Doping, Pressure and Magnetic Field Studies
【24h】

Diffusion Thermopower Of Bismuth Nanowires And The Role Of Carrier's Boundary Scattering. Doping, Pressure and Magnetic Field Studies

机译:铋纳米线的扩散热水器及载体边界散射的作用。掺杂,压力和磁场研究

获取原文

摘要

Bulk Bi and Bi-Sb are of interest for solid state cooling applications. Composites of these materials may show to be superior to bulk materials in these applications, because of quantum confinement and phonon scattering. Also, there is an interested in miniature devices and nanoscale coolers that interface with them. We have studied the thermopower of single Bi nanowires of diameters in the range 50-500 nm. The nanowires are fabricated as single strands of thermoelectric material, that are monocrystalline, in a glass envelope (a fiber). We observe that the thermopower peaks of around +90μV/K at around 50 K. These values are the largest for any electrical-conductor in this temperature range. We interpret these effects in terms of a phenomenological model where boundary scattering is more effective for electrons than for holes. The temperature and the value of thermopower maximum depend sensitively with magnetic fields and Te doping. Also, stretching the fibers cause uniaxial stresses similar to that of "negative pressure" [1] that drives an electron topological transition, similarly to the case of Bi-Te [2]. Near the ETT point we recorded very large oscillations of the thermopower, that are associated with the Landau levels in the nanowires. Our work focuses in the development a mathematical model to optimize the thermoelectric figure of merit considering magnetic field, doping, and pressure.
机译:散装BI和BI-SB对于固态冷却应用感兴趣。由于量子限制和声子散射,这些材料的复合材料可以显示在这些应用中的散装材料优于散装材料。此外,对微型设备和纳米级冷却器有一个兴趣与它们接口。我们研究了直径的单级纳米线的热电器,范围为50-500nm。纳米线被制造为单链的热电材料,即在玻璃包络(纤维)中是单晶的。我们观察到炎热峰在约50k左右的约+90μV/ k。这些值对于该温度范围内的任何电导体最大。我们在孔的现象学模型方面解释这些效果,边界散射对电子比孔更有效。热电机最大值的温度和值敏感地与磁场和掺杂有敏感。而且,拉伸纤维会导致单轴应力类似于驱动电子拓扑转变的“负压”[1],类似于Bi-Te [2]的情况。在ETT点附近,我们记录了热电机的非常大的振荡,与纳米线中的Landau水平相关联。我们的工作侧重于开发一个数学模型,以优化考虑磁场,掺杂和压力的热电数字。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号