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E.T. Lab

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E.T. NAS
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E.T. Lab

  • HOME
  • Research
  • Opening
  • TEAM
  • PUBLICATIONS
  • NEWS
  • …  
    • HOME
    • Research
    • Opening
    • TEAM
    • PUBLICATIONS
    • NEWS
E.T. NAS
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    Click for the FULL LIST OF PUBLICATIONS

     

    Selected Publications

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    [1] Lone-pair electrons induced anomalous enhancement of thermal transport in strained planar two-dimensional materials

    Guangzhao Qin, Zhenzhen Qin, Huimin Wang, and Ming Hu*

    Nano Energy 50, 425-430 (2018)

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    [2] Electric-controlled tunable thermal switch based on Janus monolayer MoSSe

    Donghai Wei, E Zhou, Xiong Zheng, Huimin Wang*, Chen Shen*, Hongbin Zhang, Zhenzhen Qin*, and Guangzhao Qin*

    npj Computational Materials 8, 260 (2022)

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    [3] Negative Poisson's ratio in two-dimensional honeycomb structures

    Guangzhao Qin* and Zhenzhen Qin*

    npj Computational Materials 6, 51 (2020)

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    [4] Accelerating evaluation of converged lattice thermal conductivity

    Guangzhao Qin and Ming Hu*

    npj Computational Materials 4, 3 (2018)

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    [5] Thermal transport in phosphorene

    Guangzhao Qin and Ming Hu*
    Small 14, 1702465 (2018)
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    [6] Hydrodynamics enhanced thermal transport due to strong interlayer interactions: A case study of strained bilayer graphene

    Fuqing Duan, Chen Shen, Hongbin Zhang, and Guangzhao Qin*
    Physical Review B 105, 125406 (2022)
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    [7] Resonant bonding driven giant phonon anharmonicity and low thermal conductivity of phosphorene

    Guangzhao Qin, Xiaoliang Zhang, Sheng-Ying Yue, Zhenzhen Qin, Huimin Wang, Yang Han, and Ming Hu*
    Phys. Rev. B 94, 165445 (2016)
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    [8] Anomalously temperature-dependent thermal conductivity of monolayer GaN with large deviation from the traditional 1/T law

    Guangzhao Qin, Zhenzhen Qin, Huimin Wang, and Ming Hu*
    Phys. Rev. B 95, 195416 (2017);
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    [9] External electric field driving the ultra-low thermal conductivity of silicene

    Guangzhao Qin, Zhenzhen Qin, Sheng-Ying Yue, Qing-Bo Yan, and Ming Hu*
    Nanoscale 9, 7227 (2017);
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    [10] Diverse anisotropy of phonon transport in two-dimensional group IV-VI compounds: A comparative study

    Guangzhao Qin, Zhenzhen Qin, Wu-Zhang Fang, Li-Chuan Zhang, Sheng-Ying Yue, Qing-Bo Yan*, Ming Hu*, and Gang Su*
    Nanoscale 8, 11306 (2016); 

Copyright © 2019-2022 by Guangzhao Qin. All rights reserved.

    E.T. Lab
    Energy Transport Laboratory (E.T. Lab) is a research group led by Prof. Dr. Guangzhao Qin at the State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body and the College of Mechanical and Vehicle Engineering, Hunan University, China. The E.T. Lab is dedicated to solving the challenging problems in seeking next-generation technologies for energy applications, which would be economic, sustainable (renewable), clean (environment-friendly), etc. Through cross-field tools primarily developing and implementing advanced numerical methods, together with experimental approaches, we study the energy transport and conversion processes at multi-time and -length scales, including fundamental physics and industrial/technical applications.
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