Goldsmid H Julian
School of Physics, University of New South Wales, Sydney, Australia.
Sci Technol Adv Mater. 2021 Apr 13;22(1):280-284. doi: 10.1080/14686996.2021.1903816.
The efficiency of a thermoelectric generator and the coefficient of performance (COP) of a thermoelectric heat pump are related to the hot and cold junction temperatures and a quantity known as the figure of merit, . During the second half of the twentieth century the figure of merit has gradually improved. This has come about through the selection of semiconducting materials with improved electronic properties and a small lattice thermal conductivity. Further advancements have been achieved by enhancing the scattering of phonons. There is also the possibility of improving the so-called power factor, that is the part of the figure of merit that contains the Seebeck coefficient and the electrical conductivity. However, it appears that it will be increasingly difficult to make further advances because of the manner in which these quantities vary with the Fermi energy. It is shown that this may set a practical limit on . Nevertheless, it may be possible to reach an efficiency or COP of about 40% of that of an ideal thermodynamic machine.
热电发电机的效率和热电热泵的性能系数(COP)与热端和冷端的结温以及一个被称为品质因数( )的量有关。在二十世纪后半叶,品质因数逐渐得到改善。这是通过选择具有改善的电子特性和小晶格热导率的半导体材料实现的。通过增强声子的散射取得了进一步的进展。还有可能改善所谓的功率因数,即品质因数中包含塞贝克系数和电导率的部分。然而,由于这些量随费米能变化的方式,似乎进一步取得进展将越来越困难。结果表明,这可能会给 设定一个实际限制。尽管如此,有可能达到理想热力机效率或COP的约40%。