热发射率
热扩散率
热导率
热容
差示扫描量热法
热力学
塞贝克系数
材料科学
热电材料
热导率测量
热电效应
相变
热的
凝聚态物理
化学
分析化学(期刊)
热阻
热接触电导
复合材料
物理
色谱法
作者
David R. Brown,Richard Heijl,Kasper A. Borup,Bo B. Iversen,Anders E. C. Palmqvist,G. Jeffrey Snyder
标识
DOI:10.1002/pssr.201600160
摘要
Accurate measurement of thermal conductivity is essential to determine the thermoelectric figure‐of‐merit, zT . Near the phase transition of Cu 2 Se at 410 K, the transport properties change rapidly with temperature, and there is a concurrent peak in measured heat capacity from differential scanning calorimetry (DSC). Interpreting the origin as a broad increase in heat capacity or as a transient resulted in a three‐fold difference in the reported zT in two recent publications. To resolve this discrepancy, thermal effusivity was deduced from thermal conductivity and diffusivity measurements via the transient plane source (TPS) method and compared with that calculated from thermal diffusivity and the two interpretations of the DSC data for heat capacity. The comparison shows that the DSC measurement gave the heat capacity relevant for calculation of the thermal conductivity of Cu 2 Se. The thermal conductivity calculated this way follows the electronic contribution to thermal conductivity closely, and hence the main cause of the zT peak is concluded to be the enhanced Seebeck coefficient. (© 2016 WILEY‐VCH Verlag GmbH &Co. KGaA, Weinheim)
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