Han Gi Chae

Han Gi Chae

Ulsan National Institute of Science and Technology

Associate Professor

Department of Materials Science and Engineering

Research Area

  • #Materials science
  • #Composite material
  • #Polyacrylonitrile
  • #Carbon nanotube
  • #Fiber
  • #Composite number
  • #Polymer
  • #Carbonization
  • #Ultimate tensile strength
  • #Chemical engineering

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Related papers to
‘ Materials science ‘ : 30

  • 3D printing of shape-conformable thermoelectric materials using all-inorganic Bi2Te3-based inks

    2018/04

    54.0 Impact Factor

    120 citations

    Fredrick Kim, Beomjin Kwon, Youngho Eom, Ji Eun Lee, Sangmin Park, Seungki Jo, Sung Hoon Park, Bong Seo Kim, Hye Jin Im, Min Ho Lee, Tae Sik Min, Kyung Tae Kim, Han Gi Chae, William P. King, Jae Sung Son

    DOI : 10.1038/S41560-017-0071-2

    • #Materials science
    • #Composite material
    • #Electricity generation
    • #Thermoelectric effect
    • #3D printing
    • #Conformable matrix
    • #Thermoelectric materials
    • #Thermoelectric generator
    • #Waste heat
    • #Waste heat recovery unit

All papers authored by
‘ Han Gi Chae ’ : 32

  • 3D printing of shape-conformable thermoelectric materials using all-inorganic Bi2Te3-based inks

    2018/04
    NATURE ENERGY

    54.0 Impact Factor

    120 citations

    Fredrick Kim, Beomjin Kwon, Youngho Eom, Ji Eun Lee, Sangmin Park, Seungki Jo, Sung Hoon Park, Bong Seo Kim, Hye Jin Im, Min Ho Lee, Tae Sik Min, Kyung Tae Kim, Han Gi Chae, William P. King, Jae Sung Son

    DOI : 10.1038/S41560-017-0071-2

    • #Materials science
    • #Composite material
    • #Electricity generation
    • #Thermoelectric effect
    • #3D printing
    • #Conformable matrix
    • #Thermoelectric materials
    • #Thermoelectric generator
    • #Waste heat
    • #Waste heat recovery unit

Related papers to
‘ Materials science ‘ : 30

  • 3D printing of shape-conformable thermoelectric materials using all-inorganic Bi2Te3-based inks

    2018/04
    NATURE ENERGY

    54.0 Impact Factor

    120 citations

    Fredrick Kim, Beomjin Kwon, Youngho Eom, Ji Eun Lee, Sangmin Park, Seungki Jo, Sung Hoon Park, Bong Seo Kim, Hye Jin Im, Min Ho Lee, Tae Sik Min, Kyung Tae Kim, Han Gi Chae, William P. King, Jae Sung Son

    DOI : 10.1038/S41560-017-0071-2

    • #Materials science
    • #Composite material
    • #Electricity generation
    • #Thermoelectric effect
    • #3D printing
    • #Conformable matrix
    • #Thermoelectric materials
    • #Thermoelectric generator
    • #Waste heat
    • #Waste heat recovery unit
  • Stress transfer in polyacrylonitrile/carbon nanotube composite fibers

    2014/05
    POLYMER

    3.6 Impact Factor

    60 citations

    Bradley A. Newcomb, Han Gi Chae, Prabhakar V. Gulgunje, Kishor Gupta, Yaodong Liu, Dmitri E. Tsentalovich, Matteo Pasquali, Satish Kumar

    DOI : 10.1016/J.POLYMER.2014.04.008

    • #Materials science
    • #Composite material
    • #Composite number
    • #Fiber
    • #Dispersion (optics)
    • #Carbon nanotube
    • #Nanocomposite
    • #Stress (mechanics)
    • #Volume fraction
    • #Polyacrylonitrile

Get access to
Contact information

Log in

All papers authored by
‘ Han Gi Chae ’ : 32

  • 3D printing of shape-conformable thermoelectric materials using all-inorganic Bi2Te3-based inks

    2018/04
    NATURE ENERGY

    54.0 Impact Factor

    120 citations

    Fredrick Kim, Beomjin Kwon, Youngho Eom, Ji Eun Lee, Sangmin Park, Seungki Jo, Sung Hoon Park, Bong Seo Kim, Hye Jin Im, Min Ho Lee, Tae Sik Min, Kyung Tae Kim, Han Gi Chae, William P. King, Jae Sung Son

    DOI : 10.1038/S41560-017-0071-2

    • #Materials science
    • #Composite material
    • #Electricity generation
    • #Thermoelectric effect
    • #3D printing
    • #Conformable matrix
    • #Thermoelectric materials
    • #Thermoelectric generator
    • #Waste heat
    • #Waste heat recovery unit
  • Stress transfer in polyacrylonitrile/carbon nanotube composite fibers

    2014/05
    POLYMER

    3.6 Impact Factor

    60 citations

    Bradley A. Newcomb, Han Gi Chae, Prabhakar V. Gulgunje, Kishor Gupta, Yaodong Liu, Dmitri E. Tsentalovich, Matteo Pasquali, Satish Kumar

    DOI : 10.1016/J.POLYMER.2014.04.008

    • #Materials science
    • #Composite material
    • #Composite number
    • #Fiber
    • #Dispersion (optics)
    • #Carbon nanotube
    • #Nanocomposite
    • #Stress (mechanics)
    • #Volume fraction
    • #Polyacrylonitrile

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