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首页> 外文期刊>Journal of Electronic Materials >Evaluation of Specific Heat, Sound Velocity and Lattice Thermal Conductivity of Strained Nanocrystalline Bismuth Antimony Telluride Thin Films
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Evaluation of Specific Heat, Sound Velocity and Lattice Thermal Conductivity of Strained Nanocrystalline Bismuth Antimony Telluride Thin Films

机译:应变纳米碲化铋锑薄膜的比热,声速和晶格热导率的评价

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摘要

To investigate the effect of strain on specific heat, sound velocity and lattice thermal conductivity of nanocrystalline bismuth antimony telluride thin films, we performed both experimental study and modeling. The nanocrystalline thin films had mostly preferred crystal orientation along c-axis, and strains in the both directions of c-axis and a-b-axis. It was found that the thermal conductivity of nanocrystalline thin films decreased greatly as compared with that of bulk alloys. To gain insight into the thermal transport in the strained nanocrystalline thin films, we estimated the lattice thermal conductivity based on the phonon transport model of full distribution of mean free paths accounting for the effects of grain size and strain which was influenced to both the sound velocity and the specific heat. As a result, the lattice thermal conductivity was increased when the strain was shifted from compressive to tensile direction. We also confirmed that the strain was influenced by the lattice thermal conductivity but the reduction of the lattice thermal conductivity of thin films can be mainly attributed to the nano-size effect rather than the strain effect. Finally, it was found that the measured lattice thermal conductivities were in good agreement with modeling.
机译:为了研究应变对纳米晶碲化铋锑薄膜的比热,声速和晶格热导率的影响,我们进行了实验研究和建模。纳米晶体薄膜沿c轴具有最优选的晶体取向,并且在c轴和a-b轴两个方向上均具有应变。发现与主体合金相比,纳米晶体薄膜的热导率大大降低。为了深入了解应变纳米晶体薄膜中的热传输,我们基于平均自由程的完整分布的声子传输模型估算了晶格热导率,该模型考虑了晶粒尺寸和应变对声速的影响和比热结果,当应变从压缩方向转变为拉伸方向时,晶格导热率增加。我们还证实了应变受晶格热导率的影响,但是薄膜晶格热导率的降低主要归因于纳米尺寸效应而不是应变效应。最后,发现所测得的晶格热导率与建模非常吻合。

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