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首页> 外文期刊>Angewandte Chemie >Soft Phonon Modes Leading to Ultralow Thermal Conductivity and High Thermoelectric Performance in AgCuTe
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Soft Phonon Modes Leading to Ultralow Thermal Conductivity and High Thermoelectric Performance in AgCuTe

机译:软校验模式导致超级导热率和agcute的高热电性能

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摘要

Crystalline solids with intrinsically low lattice thermal conductivity (kappa(L)) are crucial to realizing high-performance thermoelectric (TE) materials. Herein, we show an ultralow kappa(L) of 0.35 Wm(-1) K-1 in AgCuTe, which has a remarkable TE figure-of-merit, zT of 1.6 at 670 K when alloyed with 10 mol% Se. First-principles DFT calculation reveals several soft phonon modes in its room-temperature hexagonal phase, which are also evident from low-temperature heat-capacity measurement. These phonon modes, dominated by Ag vibrations, soften further with temperature giving a dynamic cation disorder and driving the superionic transition. Intrinsic factors cause an ultralow kL in the room-temperature hexagonal phase, while the dynamic disorder of Ag/Cu cations leads to reduced phonon frequencies and mean free paths in the high-temperature rocksalt phase. Despite the cation disorder at elevated temperatures, the crystalline conduits of the rigid anion sublattice give a high power factor.
机译:具有本质上低晶格导热率的结晶固体(Kappa(L))对于实现高性能热电(TE)材料至关重要。 在此,我们在Agcute中显示出0.35Wm(-1)k-1的0.35Wm(-1)k-1的超值κα(-1),其在用10mol%Se合金中具有显着的Te Zt的优选Zt。 第一原理DFT计算在其室温六边形阶段揭示了几种软校验模式,这也是从低温热容量测量方面明显的。 这些声子模式,由AG振动为主,进一步软化,温度赋予动态阳离子障碍并驱动了超前转变。 内在因素导致室温六方相中的超级K1,而Ag / Cu阳离子的动态障碍导致高温摇位相中的声子频率和平均自由路径。 尽管阳离子障碍在升高的温度下,但刚性阴离子子叶的晶体导管具有高功率因数。

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