4.8 Review

A Theoretical Review on Interfacial Thermal Transport at the Nanoscale

Journal

SMALL
Volume 14, Issue 2, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.201702769

Keywords

electronics; energy science; interfacial thermal transport; nanoscale

Funding

  1. National Natural Science Foundation of China [51506033]
  2. Guangxi Natural Science Foundation of China [2017JJA160108]
  3. MIIT Key Laboratory of Thermal Control of Electronic Equipment [2017JJA001]
  4. Innovation Project of GUET Graduate Education [2016YJCX18]
  5. Guangxi's Key Laboratory Foundation of Manufacturing Systems and Advanced Manufacturing Technology [15-140-30-005Z]

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With the development of energy science and electronic technology, interfacial thermal transport has become a key issue for nanoelectronics, nanocomposites, energy transmission, and conservation, etc. The application of thermal interfacial materials and other physical methods can reliably improve the contact between joined surfaces and enhance interfacial thermal transport at the macroscale. With the growing importance of thermal management in micro/nanoscale devices, controlling and tuning the interfacial thermal resistance (ITR) at the nanoscale is an urgent task. This Review examines nanoscale interfacial thermal transport mainly from a theoretical perspective. Traditional theoretical models, multiscale models, and atomistic methodologies for predicting ITR are introduced. Based on the analysis and summary of the factors that influence ITR, new methods to control and reduce ITR at the nanoscale are described in detail. Furthermore, the challenges facing interfacial thermal management and the further progress required in this field are discussed.

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