Liu Peng-Fei, Li Xiyang, Li Jingyu, Zhu Jianbo, Tong Zhen, Kofu Maiko, Nirei Masami, Xu Juping, Yin Wen, Wang Fangwei, Liang Tianjiao, Xie Lin, Zhang Yongsheng, Singh David J, Ma Jie, Lin Hua, Zhang Junrong, He Jiaqing, Wang Bao-Tian
Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China.
Spallation Neutron Source Science Center, Dongguan 523803, China.
Natl Sci Rev. 2024 Jun 22;11(12):nwae216. doi: 10.1093/nsr/nwae216. eCollection 2024 Dec.
Crystalline solids exhibiting inherently low lattice thermal conductivity ( ) are of great importance in applications such as thermoelectrics and thermal barrier coatings. However, cannot be arbitrarily low and is limited by the minimum thermal conductivity related to phonon dispersions. In this work, we report the liquid-like thermal transport in a well-ordered crystalline CsAgTe, which exhibits an extremely low value of ∼0.18 WmK. On the basis of first-principles calculations and inelastic neutron scattering measurements, we find that there are lots of low-lying optical phonon modes at ∼3.1 meV hosting the avoided-crossing behavior with acoustic phonons. These strongly localized modes are accompanied by weakly bound rattling Ag atoms with thermally induced large amplitudes of vibrations. Using the two-channel model, we demonstrate that coupling of the particle-like phonon modes and the heat-carrying wave-like phonons is essential for understanding the low , which is heavily deviated from the 1/ temperature dependence of the standard Peierls theory. In addition, our analysis indicates that the soft structural framework with liquid-like motions of the fluctuating Ag atoms is the underlying cause that leads to the suppression of the heat conduction in CsAgTe. These factors synergistically account for the ultralow value. Our results demonstrate that the liquid-like heat transfer could indeed exist in a well-ordered crystal.
具有固有低晶格热导率( )的晶体固体在热电学和热障涂层等应用中具有重要意义。然而, 不能任意低,并且受到与声子色散相关的最小热导率的限制。在这项工作中,我们报道了在有序晶体CsAgTe中类似液体的热输运,其表现出极低的 值,约为0.18 WmK。基于第一性原理计算和非弹性中子散射测量,我们发现存在许多位于约3.1 meV的低能光学声子模式,它们与声学声子存在避免交叉行为。这些强局域化模式伴随着热诱导大振动幅度的弱束缚晃动Ag原子。使用双通道模型,我们证明了类粒子声子模式和载热类波声子的耦合对于理解低 至关重要,这与标准派尔斯理论的1/ 温度依赖性有很大偏差。此外,我们的分析表明,具有晃动Ag原子类似液体运动的软结构框架是导致CsAgTe中热传导受到抑制的根本原因。这些因素协同作用导致了超低的 值。我们的结果表明,类似液体的热传递确实可以存在于有序晶体中。