Effect of Interface Structure on Thermal Boundary Conductance by using First-principles Density Functional Perturbation Theory
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Abstract
We choose a Si/Ge interface as a research object to investigate the influence of interface disorder on thermal boundary conductance. In the calculations, the diffuse mismatch model is used to study thermal boundary conductance between two non-metallic materials, while the phonon dispersion relationship is calculated by the first-principles density functional perturbation theory. The results show that interface disorder limits thermal transport. The increase of atomic spacing at the interface results in weakly coupled interfaces and a decrease in the thermal boundary conductance. This approach shows a simplistic method to investigate the relationship between microstructure and thermal conductivity.
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GAO Xue, ZHANG Yue, SHANG Jia-Xiang. Effect of Interface Structure on Thermal Boundary Conductance by using First-principles Density Functional Perturbation Theory[J]. Chin. Phys. Lett., 2011, 28(11): 110502. DOI: 10.1088/0256-307X/28/11/110502
GAO Xue, ZHANG Yue, SHANG Jia-Xiang. Effect of Interface Structure on Thermal Boundary Conductance by using First-principles Density Functional Perturbation Theory[J]. Chin. Phys. Lett., 2011, 28(11): 110502. DOI: 10.1088/0256-307X/28/11/110502
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GAO Xue, ZHANG Yue, SHANG Jia-Xiang. Effect of Interface Structure on Thermal Boundary Conductance by using First-principles Density Functional Perturbation Theory[J]. Chin. Phys. Lett., 2011, 28(11): 110502. DOI: 10.1088/0256-307X/28/11/110502
GAO Xue, ZHANG Yue, SHANG Jia-Xiang. Effect of Interface Structure on Thermal Boundary Conductance by using First-principles Density Functional Perturbation Theory[J]. Chin. Phys. Lett., 2011, 28(11): 110502. DOI: 10.1088/0256-307X/28/11/110502
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