GAO Junfeng
Professor

Gender:Male

Alma Mater:大连理工大学

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Paper Publications

Design of phosphorene/graphene heterojunctions for high and tunable interfacial thermal conductance

Release time:2019-06-12 Hits:

Indexed by:期刊论文

Date of Publication:2018-11-14

Journal:NANOSCALE

Included Journals:SCIE、Scopus

Volume:10

Issue:42

Page Number:19854-19862

ISSN No.:2040-3364

Key Words:Density functional theory; Graphene; Heterojunctions; Layered semiconductors; Molecular dynamics; Molybdenum compounds; Phonons; Tensile strain, Chemically bonded; In-depth understanding; Interfacial couplings; Molecular dynamics simulations; Orientation dependence; Orientation dependent; Thermal conductance; Thermal transport, Thermal conductivity

Abstract:Using density functional theory calculations and molecular dynamics simulations, we systematically explore various possible atomic structures of phosphorene/graphene in-plane heterojunctions and their effects on interfacial thermal conductance (ITC). Unlike the remarkable orientation-dependence of thermal conductivity in pure phosphorene, the ITC is much less orientation-dependent. In addition, the ITC is found to be high, comparable to those of graphene-MoS2 in-plane heterojunctions and chemically-bonded graphene-metal heterojunctions. Moreover, the ITC of armchair heterojunctions abnormally increases with tensile strain, while the zigzag heterojunctions simply follow the normal trend. To gain an in-depth understanding of these interesting observations, we further analyze the atomic topology and phonon vibrational spectrum and examine the nonlinear interfacial coupling in the heat transport, ITC anisotropy, and temperature effect on the ITC. Our findings suggest that phonon anharmonicity plays a critical role in the thermal transport behavior of two-dimensional in-plane heterojunctions.

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