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首页> 外文期刊>Advanced Functional Materials >Remarkable Reduction of Interfacial Thermal Resistance in Nanophononic Heterostructures
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Remarkable Reduction of Interfacial Thermal Resistance in Nanophononic Heterostructures

机译:纳米咽喉异质结构中界面热阻的显着降低

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摘要

This work investigates interfacial thermal transport in phononic-mismatched heterostructures that consists of pristine black phosphorene and its phononic crystal. It is found that the presence of the sub-periodic structure results in reduced thermal conductivity in phononic crystals. As opposed to intuitive expectations, a slight temperature jump is observed at the interface of nanophononic heterostructures, which is only about 10% of that at conventional interfaces consisting of dissimilar materials. Consequently, contact thermal conductance in the nanophononic heterostructure is 10-30 times higher than that of mass-mismatched interfaces in a comparative study. Moreover, in contrast to conventional heterostructures achieved by interfacing dissimilar materials, weak temperature dependence is observed in interfacial thermal conductance, and thermal rectification is sharply suppressed. These phenomena are well explained based on lattice dynamic insights. This work not only enhances the understanding of the fundamental physics of phonons transport across interface, but also facilitates the possible spectrum of application ranges from thermoelectrics, thermal management, to thermal cloak.
机译:该工作调查了子位错配杂体结构中的界面热传输,其由原始的黑色磷烯及其声晶晶体组成。发现亚周期结构的存在导致声子晶体中的导热率降低。与直观的期望相反,在纳米咽喉异质结构的界面处观察到轻微的温度跳跃,这仅在由不同材料组成的常规接口中仅约10%。因此,纳米咽喉异质结构中的接触热敏度比比较研究中的质量错配界面高10-30倍。此外,与通过接口异种材料实现的常规异质结构相反,在界面热传导中观察到弱温依赖性,并且急剧抑制热整流。基于格式动态见解,这些现象很好。这项工作不仅增强了对界面的声子传输的基本物理学的理解,还可以促进从热电,热管理到热斗篷的应用范围的应用范围。

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