论文标题

在Gete中的铁电相变处的晶格导热率增强的起源

The origin of the lattice thermal conductivity enhancement at the ferroelectric phase transition in GeTe

论文作者

Dangić, Đorđe, Hellman, Olle, Fahy, Stephen, Savić, Ivana

论文摘要

IV-VI热电材料中与结构相变的接近性是其较大的声子非谐性和本质上较低的晶格导热率$κ$κ$的主要原因之一。但是,Gete的$κ$在接近$ 700 $ k的铁相变时增加。使用与温度相关的有效潜在方法的第一原理计算,我们表明,$κ$的这种上升是rhombohedral阶段负面热量扩张的结果,而高度超控相位的声子寿命增加了。负热膨胀增加了声子群速度,这抵消了声子模式的呼吸呼吸量,并增强了$κ$接近菱形阶段相变的$κ$。在立方阶段,非谐力常数的大幅下降会增加声子的寿命和$κ$。在相跃迁附近的强烈非谐性会引起声子功能光谱的非洛伦兹形状。为了解决这些影响,我们基于绿色kubo方法实现了一种新的计算$κ$的方法,并发现Boltzmann传输方程低估了相变附近的$κ$。我们的发现阐明了结构相变对$κ$的影响,并为设计更好的热电材料设计提供了指导。

The proximity to structural phase transitions in IV-VI thermoelectric materials is one of the main reasons for their large phonon anharmonicity and intrinsically low lattice thermal conductivity $κ$. However, the $κ$ of GeTe increases at the ferroelectric phase transition near $700$ K. Using first-principles calculations with the temperature dependent effective potential method, we show that this rise in $κ$ is the consequence of negative thermal expansion in the rhombohedral phase and increase in the phonon lifetimes in the high-symmetry phase. Negative thermal expansion increases phonon group velocities, which counteracts enhanced anharmonicity of phonon modes and boosts $κ$ close to the phase transition in the rhombohedral phase. A drastic decrease in the anharmonic force constants in the cubic phase increases the phonon lifetimes and $κ$. Strong anharmonicity near the phase transition induces non-Lorentzian shapes of the phonon power spectra. To account for these effects, we implement a novel method of calculating $κ$ based on the Green-Kubo approach and find that the Boltzmann transport equation underestimates $κ$ near the phase transition. Our findings elucidate the influence of structural phase transitions on $κ$ and provide guidance for design of better thermoelectric materials.

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