사진

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Kim, Gun-Ho (김건호)

Department
Department of Mechanical Engineering(기계공학과)
Website
https://sites.google.com/site/softheatlab/
Lab
SoftHeat Lab. (연성물질 열물리 연구실)
Research Keywords
High performance medical cooling technology, Graphene related materials, Graphene, Sensor fabrication, Carbon based composites
Research Interests
In Combustion and Propulsion laboratory, we are investigating the characteristics of laminar/turbulent reacting flows using direct numerical simulations (DNS), large eddy simulations (LES), and Reynolds-Averaged Navier-Stokes Simulations (RANS) to understand flame instability, turbulence/chemistry interaction, etc. An indepth understanding of fundamental characteristics of laminar/turbulent flames can help us develop next-generation engines, gas turbines, and commercial boilers. We are also interested in supercritical CO2 (sCO2) oxy-fuel combustion and plasma-assisted combustion, and their emission characteristics in gas-turbine combustor.
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Issue DateTitleAuthor(s)TypeViewAltmetrics
2021-10Interphase strengthening of carbon fiber/polyamide 6 composites through mixture of sizing agent and reduced graphene oxide coatingCho, Beom-Gon; Joshi, Shalik Ram; Han, Jong Hun, et alARTICLE25 Interphase strengthening of carbon fiber/polyamide 6 composites through mixture of sizing agent and reduced graphene oxide coating
2021-09Enhanced Thermal Transport across Self-Interfacing van der Waals Contacts in Flexible Thermal DevicesSeong, Minho; Hwang, Insol; Park, Seongjin, et alARTICLE97 Enhanced Thermal Transport across Self-Interfacing van der Waals Contacts in Flexible Thermal Devices
2021-08Superhydrophobic and Self-Sterilizing Surgical Masks Spray-Coated with Carbon NanotubesSoni, Ritesh; Joshi, Shalik Ram; Karmacharya, Mamata, et alARTICLE10 Superhydrophobic and Self-Sterilizing Surgical Masks Spray-Coated with Carbon Nanotubes
2021-06Low-cost synthesis of high quality graphene oxide with large electrical and thermal conductivitiesJoshi, Shalik Ram; Lee, Jaekyo; Kim, Gun-HoARTICLE44 Low-cost synthesis of high quality graphene oxide with large electrical and thermal conductivities
2021-02Enhanced Mechanical and Antibacterial Properties of Nanocomposites Based on Poly(vinyl Alcohol) and Biopolymer-Derived Reduced Graphene OxideCho, Beom-Gon; Joshi, Shalik Ram; Lee, Seongjin, et alARTICLE68 Enhanced Mechanical and Antibacterial Properties of Nanocomposites Based on Poly(vinyl Alcohol) and Biopolymer-Derived Reduced Graphene Oxide
2021-02Tacticity-dependent cross-plane thermal conductivity in molecularly engineered amorphous polymersLee, Jaekyo; Kim, Youngmu; Joshi, Shalik Ram, et alARTICLE42 Tacticity-dependent cross-plane thermal conductivity in molecularly engineered amorphous polymers
2021-01Photoactive Antiviral Face Mask with Self-Sterilization and ReusabilityKumar, Sumit; Karmacharya, Mamata; Joshi, Shalik Ram, et alARTICLE323 Photoactive Antiviral Face Mask with Self-Sterilization and Reusability
2021-01A general approach to composites containing nonmetallic fillers and liquid galliumWang, Chunhui; Gong, Yan; Cunning, Benjamin, V, et alARTICLE58 A general approach to composites containing nonmetallic fillers and liquid gallium
2020-11Low-cost and Fast-response Resistive Humidity Sensor Comprising Biopolymer-derived Carbon Thin Film and Carbon MicroelectrodesJoshi, Shalik Ram; Kim, Beomsang; Kim, Shin-Kwan, et alARTICLE236 Low-cost and Fast-response Resistive Humidity Sensor Comprising Biopolymer-derived Carbon Thin Film and Carbon Microelectrodes
2020-11Low-cost and Fast-response Resistive Humidity Sensor Comprising Biopolymer-derived Carbon Thin Film and Carbon MicroelectrodesJoshi, Shalik Ram; Kim, Beomsang; Kim, Shin-Kwan, et alARTICLE29 Low-cost and Fast-response Resistive Humidity Sensor Comprising Biopolymer-derived Carbon Thin Film and Carbon Microelectrodes
2020-07Direct growth of thermally reduced graphene oxide on carbon fiber for enhanced mechanical strengthCho, Beom-Gon; Joshi, Shalik Ram; Lee, Jaekyo, et alARTICLE1585 Direct growth of thermally reduced graphene oxide on carbon fiber for enhanced mechanical strength
2020-05Highly Ordered and Dense Thermally Conductive Graphitic Films from a Graphene Oxide/Reduced Graphene Oxide MixtureAkbari, Abozar; Cunning, Benjamin V.; Joshi, Shalik R., et alARTICLE296 Highly Ordered and Dense Thermally Conductive Graphitic Films from a Graphene Oxide/Reduced Graphene Oxide Mixture
2020-03Low cost synthesis of reduced graphene oxide using biopolymer for influenza virus sensorJoshi, Shalik R.; Sharma, Abhinav; Kim, Gun-Ho, et alARTICLE419 Low cost synthesis of reduced graphene oxide using biopolymer for influenza virus sensor
2020-01High Efficiency Doping of Conjugated Polymer for Investigation of Intercorrelation of Thermoelectric Effects with Electrical and Morphological PropertiesYoon, Sang Eun; Kang, Yeongkwon; Noh, So Yeon, et alARTICLE248 High Efficiency Doping of Conjugated Polymer for Investigation of Intercorrelation of Thermoelectric Effects with Electrical and Morphological Properties
2019-09A Cold-Sensing Receptor Encoded by a Glutamate Receptor GeneGong, Jianke; Liu, Jinzhi; Ronan, Elizabeth A., et alARTICLE371 A Cold-Sensing Receptor Encoded by a Glutamate Receptor Gene
2019-07Ultrastiff, Strong, and Highly Thermally Conductive Crystalline Graphitic Films with Mixed Stacking OrderWang, Bin; Cunning, Benjamin V.; Kim, Na Yeon, et alARTICLE431 Ultrastiff, Strong, and Highly Thermally Conductive Crystalline Graphitic Films with Mixed Stacking Order
2018-08Increasing the thermoelectric power factor of solvent-treated PEDOT:PSS thin films on PDMS by stretchingJeong, Myeong Hoon; Sanger, Amit; Kang, Sung Bum, et alARTICLE869 Increasing the thermoelectric power factor of solvent-treated PEDOT:PSS thin films on PDMS by stretching
2017-07High thermal conductivity in electrostatically engineered amorphous polymersShanker, Apoory; Li, Chen; Kim, Gun-Ho, et alARTICLE743 High thermal conductivity in electrostatically engineered amorphous polymers
2016-06Figure-of-merit for phase-change materials used in thermal managementShao, Lei; Raghavan, Arun; Kim, Gun-Ho, et alARTICLE850 Figure-of-merit for phase-change materials used in thermal management
2016-02Humidity-dependent thermoelectric properties of poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate)Kim, Gun-Ho; Kim, Jinsang; Pipe, Kevin P.ARTICLE834 Humidity-dependent thermoelectric properties of poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate)

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