Department of Physics and Materials Science Institute, University of Oregon, Eugene, Oregon 97403, United States.
Nano Lett. 2011 Nov 9;11(11):4679-81. doi: 10.1021/nl202258f. Epub 2011 Oct 19.
The Seebeck coefficient, a key parameter describing a material's thermoelectric performance, is generally difficult to measure, and no intrinsic calibration standard exists. Quantum dots and single electron tunneling devices with sharp transmission resonances spaced by many kT have a material-independent Seebeck coefficient that depends only on the electronic charge and the average device temperature T. Here we propose the use of a quantum dot to create an intrinsic, nanoscale standard for the Seebeck coefficient and discuss its implementation.
塞贝克系数是描述材料热电性能的关键参数,通常难以测量,且不存在内在的校准标准。具有尖锐传输共振且间隔多个 kT 的量子点和单电子隧道器件具有与材料无关的塞贝克系数,该系数仅取决于电子电荷和器件平均温度 T。在此,我们提出利用量子点来创建塞贝克系数的内在纳米级标准,并讨论其实现方法。