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Park, Hyesung (박혜성)

Department
School of Energy and Chemical Engineering(에너지및화학공학부)
Research Interests
Nano materials, renewable energy, optoelectronic devices
Lab
Sustainable Energy, Low-Dimensional Materials & Functional Devices Lab
Website
http://hspark.unist.ac.kr/
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Issue DateTitleAuthor(s)TypeViewAltmetrics
201410Improved efficiency in organic/inorganic hybrid solar cells by interfacial modification of ZnO nanowires with small moleculesChang, Sehoon; Park, Hyesung; Cheng, Jayce J., et alARTICLE367 Improved efficiency in organic/inorganic hybrid solar cells by interfacial modification of ZnO nanowires with small molecules
201410Motional Heating in a Graphene-Coated Ion TrapEltony, Amira M.; Park, Hyesung G.; Wang, Shannon X., et alARTICLE411 Motional Heating in a Graphene-Coated Ion Trap
201409Flexible Graphene Electrode-Based Organic Photovoltaics with Record-High EfficiencyPark, Hyesung; Chang, Sehoon; Zhou, Xiang, et alARTICLE443 Flexible Graphene Electrode-Based Organic Photovoltaics with Record-High Efficiency
201406An Alternative Hole Transport Layer for Both ITO- and Graphene-Based Organic Solar CellsPark, Hyesung; Kong, JingARTICLE418 An Alternative Hole Transport Layer for Both ITO- and Graphene-Based Organic Solar Cells
201310Application of solvent modified PEDOT:PSS to graphene electrodes in organic solar cellsPark, Hyesung; Shi, Yumeng; Kong, JingARTICLE486 Application of solvent modified PEDOT:PSS to graphene electrodes in organic solar cells
201308Anomalous Behaviors of Graphene Transparent Conductors in Graphene-Silicon Heterojunction Solar CellsLi, Xinming; Xie, Dan; Park, Hyesung, et alARTICLE377 Anomalous Behaviors of Graphene Transparent Conductors in Graphene-Silicon Heterojunction Solar Cells
201304Interface engineering of graphene for universal applications as both anode and cathode in organic photovoltaicsPark, Hyesung; Chang, Sehoon; Smith, Matthew, et alARTICLE450 Interface engineering of graphene for universal applications as both anode and cathode in organic photovoltaics
201303Ion doping of graphene for high-efficiency heterojunction solar cellsLi, Xinming; Xie, Dan; Park, Hyesung, et alARTICLE418 Ion doping of graphene for high-efficiency heterojunction solar cells
201301Demonstration of a Subthreshold FPGA Using Monolithically Integrated Graphene InterconnectsLee, Kyeong-Jae; Park, Hyesung; Kong, Jing, et alARTICLE434 Demonstration of a Subthreshold FPGA Using Monolithically Integrated Graphene Interconnects
201301Graphene Cathode-Based ZnO Nanowire Hybrid Solar CellsPark, Hyesung; Chang, Sehoon; Jean, Joel, et alARTICLE373 Graphene Cathode-Based ZnO Nanowire Hybrid Solar Cells
201207Organic Solar Cells with Graphene Electrodes and Vapor Printed Poly(3,4-ethylenedioxythiophene) as the Hole Transporting LayersPark, Hyesung; Howden, Rachel M.; Barr, Miles C., et alARTICLE375 Organic Solar Cells with Graphene Electrodes and Vapor Printed Poly(3,4-ethylenedioxythiophene) as the Hole Transporting Layers
201201Graphene As Transparent Conducting Electrodes in Organic Photovoltaics: Studies in Graphene Morphology, Hole Transporting Layers, and Counter ElectrodesPark, Hyesung; Brown, Patrick R.; Buloyic, Vladimir, et alARTICLE396 Graphene As Transparent Conducting Electrodes in Organic Photovoltaics: Studies in Graphene Morphology, Hole Transporting Layers, and Counter Electrodes
201012Doped graphene electrodes for organic solar cellsPark, Hyesung; Rowehl, Jill A.; Kim, Ki Kang, et alARTICLE362 Doped graphene electrodes for organic solar cells
201007Enhancing the conductivity of transparent graphene films via dopingKim, Ki Kang; Reina, Alfonso; Shi, Yumeng, et alARTICLE381 Enhancing the conductivity of transparent graphene films via doping
200707Computational and functional evaluation of a microfluidic blood flow deviceGilbert, Richard J.; Park, Hyesung; Rasponi, Marco, et alARTICLE417 Computational and functional evaluation of a microfluidic blood flow device
200601Electron momentum distribution in multiply-ionized atoms as a function of atomic number and degree of ionizationPark, Hyesung; Karim, KRARTICLE483 Electron momentum distribution in multiply-ionized atoms as a function of atomic number and degree of ionization

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