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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Temperature behavior of thermal expansion anisotropy, Gruneisen parameters and thermal conductivity of chalcopyrite AgGa0.7In0.3Se2 crystal
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Temperature behavior of thermal expansion anisotropy, Gruneisen parameters and thermal conductivity of chalcopyrite AgGa0.7In0.3Se2 crystal

机译:黄铜矿AgGa0.7In0.3Se2晶体的热膨胀各向异性温度行为,Gruneisen参数和热导率

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Thermal expansion coefficients measurements of AgGa0.7In0.3Se2 with the direction of c-and a-axis are made in the temperature range between 300 and 900 K. It is obviously that AgGa0.7In0.3Se2 is with a reverse thermal expansion behavior along the c-axis, and variation of directional coefficient at different temperatures as a function of cos2 phi has been discussed in this work. It's found that the crystal would expand with increasing temperature if the angle between the direction [hkl] and the c-axis is greater than 42.71 degrees. In addition, Gruneisen parameters at different temperatures have been calculated and also exhibit anisotropic behavior (gamma(a) > gamma(c)). At last, by a modified formula, variation of lattice thermal conductivity with temperature have been deduced. And the calculation value at room temperature is a little larger than the measurement value of thermal conductivity with [100] direction at room temperature which is found to be 0.751 W/m K. (C) 2016 Elsevier B.V. All rights reserved.
机译:在300至900 K的温度范围内,对AgGa0.7In0.3Se2沿c轴和a轴方向进行热膨胀系数测量。在这项工作中已经讨论了c轴以及在不同温度下方向系数随cos2 phi的变化。已发现,如果方向[hkl]与c轴之间的角度大于42.71度,则晶体会随着温度的升高而膨胀。此外,已经计算出了不同温度下的Gruneisen参数,并且它们还表现出各向异性行为(γ(a)> gamma(c))。最后,通过修正公式,推导了晶格热导率随温度的变化。室温下的计算值略大于室温下[100]方向的导热系数的测量值0.751 W / mK。(C)2016 Elsevier B.V.保留所有权利。

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