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首页> 外文期刊>Journal of the Physical Society of Japan >Effect of Planar Rattling on Suppression of Thermal Conductivity in Thermoelectric Materials
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Effect of Planar Rattling on Suppression of Thermal Conductivity in Thermoelectric Materials

机译:平面响对热电材料抑制热导率的影响

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摘要

We studied the thermoelectric properties, crystal structure, and phonon dynamics of LaOBiS2-xSex. We found that LaOBiS2-xSex has an extremely low lattice thermal conductivity of 1 W/mK around room temperature, which is lower than that of vitreous silica. This low lattice thermal conductivity indicates that LaOBiS2-xSex is a promising thermoelectric material with a dimensionless figure of merit of 0.35 at T = 650 K. Crystal structure refinement revealed that Bi atoms vibrate considerably along the c-axis. The energy of Bi vibration modes decreases linearly with decreasing lattice thermal conductivity, suggesting that the Bi vibration modes are responsible for the low lattice thermal conductivity, similar to rattling in oversized cage compounds. The present Bi rattling modes are activated by in-plane chemical pressure, in contrast to those in oversized cage compounds where a larger free space enhances the rattling modes further. We defined this new type of rattling as planar rattling, which can provide a new strategy for developing high-performance thermoelectric materials.
机译:我们研究了LAOBIS2-XSEx的热电性能,晶体结构和声子动态。我们发现老挝2-XSEX在室温下具有极低的晶格导热率为1W / mk,低于玻璃体的二氧化硅。这种低晶格导热率表明,LAOBIS2-XSEX是一个有前途的热电材料,其在T = 650k时的0.35的无量纲值为0.35。晶体结构改进揭示了沿C轴显着振动。 Bi振动模式的能量随着晶格导热率的降低而线性降低,表明双振动模式负责低晶格导热率,类似于超大笼子化合物中的嘎嘎声。本发明的双焦点模式通过面内化学压力激活,与超大的笼子化合物相反,其中更大的自由空间进一步增强了嘎嘎作用。我们将这种新型响铃视为平面嘎嘎作响,可以为开发高性能热电材料提供一种新的策略。

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