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从第一性原理晶格动力学预测氮化物钙钛矿 LaWN 的晶格热导率。

Predicting the Lattice Thermal Conductivity in Nitride Perovskite LaWN from ab initio Lattice Dynamics.

机构信息

Shenzhen JL Computational Science and Applied Research Institute, Shenzhen, 518131, China.

Beijing Computational Science Research Center, Beijing, 100193, China.

出版信息

Adv Sci (Weinh). 2023 Mar;10(9):e2205934. doi: 10.1002/advs.202205934. Epub 2023 Jan 22.

Abstract

Using a density functional theory-based thermal transport model, which includes the effects of temperature (T)-dependent potential energy surface, lattice thermal expansion, force constant renormalization, and higher-order quartic phonon scattering processes, it is found that the recently synthesized nitride perovskite LaWN displays strong anharmonic lattice dynamics manifested into a low lattice thermal conductivity (κ ) and a non-standard κ ∝T dependence. At high T, the departure from the standard κ ∝T law originates in the dual particle-wave behavior of the heat carrying phonons, which includes vibrations tied to the N atoms. While the room temperature κ =2.98 W mK arises mainly from the conventional particle-like propagation of phonons, there is also a significant atypical wave-like phonon tunneling effect, leading to a 20% glass-like heat transport contribution. The phonon broadening effect lowers the particle-like contribution but increases the glass-like one. Upon T increase, the glass-like contribution increases and dominates above T = 850 K. Overall, the low κ with a weak T-dependence points to a new utility for LaWN in energy technology applications, and motivates synthesis and exploration of nitride perovskites.

摘要

利用基于密度泛函理论的热传输模型,其中包括温度(T)相关的势能面、晶格热膨胀、力常数重整化以及更高阶四次声子散射过程的影响,研究发现最近合成的氮化物钙钛矿 LaWN 表现出强烈的非谐晶格动力学,表现为低晶格热导率(κ)和非标准κ∝T 依赖性。在高温下,偏离标准κ∝T 定律源于载热声子的双粒子-波行为,其中包括与 N 原子相关的振动。虽然室温下κ=2.98 W mK 主要来自于声子的常规粒子状传播,但也存在显著的非典型波状声子隧穿效应,导致 20%的类玻璃热传输贡献。声子展宽效应降低了粒子状贡献,但增加了类玻璃状贡献。随着温度的升高,类玻璃状贡献增加并在 T>850 K 时占主导地位。总的来说,低κ值和弱 T 依赖性表明 LaWN 在能源技术应用中有新的用途,并促使合成和探索氮化物钙钛矿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25e4/10037690/656079a6eb0d/ADVS-10-2205934-g002.jpg

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