热扩散率
热导率
材料科学
相变
热力学
热传导
相(物质)
热的
热阻
热透过率
热发射率
凝聚态物理
热接触电导
复合材料
化学
物理
有机化学
作者
Hongyi Chen,Zhongmou Yue,Dudi Ren,Huarong Zeng,Tian‐Ran Wei,Kunpeng Zhao,Ronggui Yang,Pengfei Qiu,Lidong Chen,Xun Shi
标识
DOI:10.1002/adma.201806518
摘要
Abstract Thermal conductivity is a very basic property that determines how fast a material conducts heat, which plays an important and sometimes a dominant role in many fields. However, because materials with phase transitions have been widely used recently, understanding and measuring temperature‐dependent thermal conductivity during phase transitions are important and sometimes even questionable. Here, the thermal transport equation is corrected by including heat absorption due to phase transitions to reveal how a phase transition affects the measured thermal conductivity. In addition to the enhanced heat capacity that is well known, it is found that thermal diffusivity can be abnormally lowered from the true value, which is also dependent on the speed of phase transitions. The extraction of the true thermal conductivity requires removing the contributions from both altered heat capacity and thermal diffusivity during phase transitions, which is well demonstrated in four selected kinds of phase transition materials (Cu 2 Se, Cu 2 S, Ag 2 S, and Ag 2 Se) in experiment. This study also explains the lowered abnormal thermal diffusivity during phase transitions in other materials and thus provides a novel strategy to engineer thermal conductivity for various applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI