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Chae, Han Gi (채한기)

Department
School of Materials Science and Engineering(신소재공학부)
Research Interests
Polymer Physics/ Processing, Carbon Nano-materials, Ultra high performance/ multifuctional nano-composites, Smart textile/ fiber
Lab
Polymer nano-composites and Carbon Fiber Laboratory (P&C Lab)
Website
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Issue DateTitleAuthor(s)TypeViewAltmetrics
201903Rheological design of 3D printable all-inorganic inks using BiSbTe-based thermoelectric materialsEom, Youngho; Kim, Fredrick; Yang, Seong Eun, et alARTICLE4 Rheological design of 3D printable all-inorganic inks using BiSbTe-based thermoelectric materials
201812Sewing machine stitching of polyvinylidene fluoride fibers: programmable textile patterns for wearable triboelectric sensorsShin, Young-Eun; Lee, Jeong-Eun; Park, Yoojeong, et alARTICLE44 Sewing machine stitching of polyvinylidene fluoride fibers: programmable textile patterns for wearable triboelectric sensors
201812The Effect of Heat Treatment Condition on the Mechanical Properties of oxi-PAN Based Carbon FiberChoi, Kyeong Hun; Heo, So Jeong; Hwang, Sang-Ha, et alARTICLE29 The Effect of Heat Treatment Condition on the Mechanical Properties of oxi-PAN Based Carbon Fiber
201812The effects of plasma surface treatment on the mechanical properties of polycarbonate/carbon nanotube/carbon fiber compositesCho, Beom-Gon; Hwang, Sang-Ha; Park, Miseon, et alARTICLE34 The effects of plasma surface treatment on the mechanical properties of polycarbonate/carbon nanotube/carbon fiber composites
201808Influence of hybrid graphene oxide-carbon nanotube as a nano-filler on the interfacial interaction in nylon composites prepared by in situ interfacial polymerizationCho, Beom-Gon; Lee, Seonghwan; Hwang, Sang-Ha, et alARTICLE84 Influence of hybrid graphene oxide-carbon nanotube as a nano-filler on the interfacial interaction in nylon composites prepared by in situ interfacial polymerization
201806Pt nanoparticle-decorated reduced graphene oxide hydrogel for high-performance strain sensor: Tailoring piezoresistive property by controlled microstructure of hydrogelHwang, Sang-Ha; Park, Young-Bin; Hur, Seung-Hyun, et alARTICLE154 Pt nanoparticle-decorated reduced graphene oxide hydrogel for high-performance strain sensor: Tailoring piezoresistive property by controlled microstructure of hydrogel
2018043D printing of shape-conformable thermoelectric materials using all-inorganic Bi2Te3-based inksKim, Fredrick; Kwon, Beomjin; Eom, Youngho, et alARTICLE481 3D printing of shape-conformable thermoelectric materials using all-inorganic Bi2Te3-based inks
201707Reinforcement efficiency of carbon nanotubes and their effect on crystal-crystal slip in poly(ether ketone)/carbon nanotube composite fibersNewcomb, Bradley A.; Chae, Han Gi; Thomson, Lindsey, et alARTICLE451 Reinforcement efficiency of carbon nanotubes and their effect on crystal-crystal slip in poly(ether ketone)/carbon nanotube composite fibers
201704Effect of high-shear mixing by twin-screw extruder on the dispersion and homogeneity of polyacrylonitrile/carbon nanotube composite solutionYan, Xuejia; Dong, Hongming; Xiao, Zhiwei, et alARTICLE168 Effect of high-shear mixing by twin-screw extruder on the dispersion and homogeneity of polyacrylonitrile/carbon nanotube composite solution
201612High surface area carbon from polyacrylonitrile for high performance electrochemical capacitive energy storageGupta, Kishor; Liu, Tianyuan; Kavian, Reza, et alARTICLE430 High surface area carbon from polyacrylonitrile for high performance electrochemical capacitive energy storage
201603Polyacrylonitrile solution homogeneity study by dynamic shear rheology and the effect on the carbon fiber tensile strengthNewcomb, Bradley A.; Gulgunje, Prabhakar V.; Liu, Yaodong, et alARTICLE90 Polyacrylonitrile solution homogeneity study by dynamic shear rheology and the effect on the carbon fiber tensile strength
201512Low-density and high-modulus carbon fibers from polyacrylonitrile with honeycomb structureGulgunje, Prabhakar V.; Newcomb, Bradley A.; Gupta, Kishor K., et alARTICLE424 Low-density and high-modulus carbon fibers from polyacrylonitrile with honeycomb structure
201511Processing, structure, and properties of gel spun PAN and PAN/CNT fibers and gel spun PAN based carbon fibersNewcomb, Bradley A.; Gulgunje, Prabhakar V.; Gupta, Kishor K., et alARTICLE432 Processing, structure, and properties of gel spun PAN and PAN/CNT fibers and gel spun PAN based carbon fibers
201511High resolution transmission electron microscopy study on polyacrylonitrile/carbon nanotube based carbon fibers and the effect of structure development on the thermal and electrical conductivitiesNewcomb, Bradley A.; Giannuzzi, Lucille; Lyons, Kevin M., et alARTICLE384 High resolution transmission electron microscopy study on polyacrylonitrile/carbon nanotube based carbon fibers and the effect of structure development on the thermal and electrical conductivities
201511High strength and high modulus carbon fibersChae, Han Gi; Newcomb, Bradley A.; Gulgunje, Prabhakar V., et alARTICLE741 High strength and high modulus carbon fibers
201508Development of single filament testing procedure for polyacrylonitrile precursor and polyacrylonitrile-based carbon fibersLyons, Kevin M.; Newcomb, Bradley A.; McDonald, Kenneth J., et alARTICLE530 Development of single filament testing procedure for polyacrylonitrile precursor and polyacrylonitrile-based carbon fibers
201507Effect of processing conditions on the dispersion of carbon nanotubes in polyacrylonitrile solutionsYan, Xuejia; Dong, Hongming; Liu, Yaodong, et alARTICLE861 Effect of processing conditions on the dispersion of carbon nanotubes in polyacrylonitrile solutions
201506Investigation of polyacrylonitrile solution inhomogeneity by dynamic light scatteringRaghavan, Vijay; Gupta, Murari; Xiao, Zhiwei, et alARTICLE435 Investigation of polyacrylonitrile solution inhomogeneity by dynamic light scattering
201505Preparation of low density hollow carbon fibers by bi-component gel-spinning methodLiu, Yaodong; Chae, Han Gi; Choi, Young Ho, et alARTICLE592 Preparation of low density hollow carbon fibers by bi-component gel-spinning method
201410High strength micron size carbon fibers from polyacrylonitrile-carbon nanotube precursorsSahin, Korhan; Fasanella, Nicholas A.; Chasiotis, Ioannis, et alARTICLE462 High strength micron size carbon fibers from polyacrylonitrile-carbon nanotube precursors

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