Philip Kim

Philip Kim

Harvard University

Professor

Applied Physics

Research Area

  • #Materials science
  • #Condensed matter physics
  • #Graphene
  • #Optoelectronics
  • #Physics
  • #Nanotechnology
  • #van der Waals force
  • #Electron
  • #Heterojunction
  • #Bilayer graphene

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Related papers to
‘ Materials science ‘ : 78

  • Highly Stable, Dual-Gated MoS2 Transistors Encapsulated by Hexagonal Boron Nitride with Gate-Controllable Contact, Resistance, and Threshold Voltage.

    2015/06

    13.3 Impact Factor

    277 citations

    Gwan Hyoung Lee, Xu Cui, Young Duck Kim, Ghidewon Arefe, Xian Zhang, Chul Ho Lee, Fan Ye, Kenji Watanabe, Takashi Taniguchi, Philip Kim, James Hone

    DOI : 10.1021/ACSNANO.5B01341

    • #Materials science
    • #Nanotechnology
    • #Semiconductor
    • #Graphene
    • #Heterojunction
    • #Electrical contacts
    • #Molybdenum disulfide
    • #Electron mobility
    • #Contact resistance
    • #Threshold voltage

All papers authored by
‘ Philip Kim ’ : 121

  • Atomically thin p–n junctions with van der Waals heterointerfaces

    2014/09
    NATURE NANOTECHNOLOGY

    34.0 Impact Factor

    1653 citations

    Chul Ho Lee, Gwan Hyoung Lee, Arend M. van der Zande, Wenchao Chen, Yilei Li, Minyong Han, Xu Cui, Ghidewon Arefe, Colin Nuckolls, Tony F. Heinz, Jing Guo, James Hone, Philip Kim

    DOI : 10.1038/NNANO.2014.150

    • #Physics
    • #Optoelectronics
    • #Nanotechnology
    • #Heterojunction
    • #Electrical junction
    • #Transition metal
    • #van der Waals force
    • #Van der waals heterostructures

Related papers to
‘ Materials science ‘ : 78

  • Highly Stable, Dual-Gated MoS2 Transistors Encapsulated by Hexagonal Boron Nitride with Gate-Controllable Contact, Resistance, and Threshold Voltage.

    2015/06
    ACS NANO

    13.3 Impact Factor

    277 citations

    Gwan Hyoung Lee, Xu Cui, Young Duck Kim, Ghidewon Arefe, Xian Zhang, Chul Ho Lee, Fan Ye, Kenji Watanabe, Takashi Taniguchi, Philip Kim, James Hone

    DOI : 10.1021/ACSNANO.5B01341

    • #Materials science
    • #Nanotechnology
    • #Semiconductor
    • #Graphene
    • #Heterojunction
    • #Electrical contacts
    • #Molybdenum disulfide
    • #Electron mobility
    • #Contact resistance
    • #Threshold voltage
  • Atomic and electronic reconstruction at the van der Waals interface in twisted bilayer graphene

    2019/04
    NATURE MATERIALS

    38.7 Impact Factor

    249 citations

    Hyobin Yoo, Rebecca Engelke, Stephen Carr, Shiang Fang, Kuan Zhang, Paul Cazeaux, Suk Hyun Sung, Robert Hovden, Adam W. Tsen, Takashi Taniguchi, Kenji Watanabe, Gyu-Chul Yi, Miyoung Kim, Mitchell B Luskin, Ellad B Tadmor, Efthimios Kaxiras, Philip Kim

    DOI : 10.1038/S41563-019-0346-Z

    • #Materials science
    • #Condensed matter physics
    • #Electric field
    • #Electronic structure
    • #Heterojunction
    • #Superlattice
    • #Soliton
    • #van der Waals force
    • #Quasiperiodic function
    • #Bilayer graphene

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Contact information

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All papers authored by
‘ Philip Kim ’ : 121

  • Atomically thin p–n junctions with van der Waals heterointerfaces

    2014/09
    NATURE NANOTECHNOLOGY

    34.0 Impact Factor

    1653 citations

    Chul Ho Lee, Gwan Hyoung Lee, Arend M. van der Zande, Wenchao Chen, Yilei Li, Minyong Han, Xu Cui, Ghidewon Arefe, Colin Nuckolls, Tony F. Heinz, Jing Guo, James Hone, Philip Kim

    DOI : 10.1038/NNANO.2014.150

    • #Physics
    • #Optoelectronics
    • #Nanotechnology
    • #Heterojunction
    • #Electrical junction
    • #Transition metal
    • #van der Waals force
    • #Van der waals heterostructures
  • Multi-terminal transport measurements of MoS2 using a van der Waals heterostructure device platform

    2015/06
    NATURE NANOTECHNOLOGY

    35.5 Impact Factor

    943 citations

    Xu Cui, Gwan Hyoung Lee, Young Duck Kim, Ghidewon Arefe, Pinshane Y. Huang, Chul Ho Lee, Daniel A. Chenet, Xiangwei Zhang, Lei Wang, Fan Ye, Filippo Pizzocchero, Bjarke S. Jessen, Kenji Watanabe, Takashi Taniguchi, David A. Muller, Tony Low, Philip Kim, James Hone

    DOI : 10.1038/NNANO.2015.70

    • #Physics
    • #Optoelectronics
    • #Nanotechnology
    • #Heterojunction
    • #van der Waals force
    • #Quantum oscillations

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