사진

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Kim, Jin Young (김진영)

Department
탄소중립대학원
Website
http://ngel.unist.ac.kr/
Lab
Next Generation Energy Lab. (차세대 에너지 연구실)
Research Keywords
페로브스카이트 태양전지, 유기 발광소자, 페로브스카이트 발광소자, 유기 트렌지스터, 고분자 태양전지, 양자점 태양전지, 유무기 하이브리드 태양전지, Polymer solar cells, OLEDs, PeLEDs, QD solar cells, perovskite solar cells, organic-inorganic hybrid solar cells
Research Interests
Our main field of research is photovoltaic cells which are based organic, perovskite and quantum dot (QD) that produce the electricity from sunlight and we are also interested in developing hybrid solar cells which combine the advantages of organic materials and inorganic semiconductors. Beyond the solar cells, we are expanding our research interests into next generation (opto)electronic devices such as light-emitting diodes (LED), field effect transistors, and thermoelectrics.
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Issue DateTitleAuthor(s)TypeViewAltmetrics
2014-01Amine-Based Polar Solvent Treatment for Highly Efficient Inverted Polymer Solar CellsLee, Bo Ram; Jung, Eui Dae; Nam, Yun Seok, et alARTICLE1132 Amine-Based Polar Solvent Treatment for Highly Efficient Inverted Polymer Solar Cells
2013-12A hybrid solar cell fabricated using amorphous silicon and a fullerene derivativeYun, Myoung Hee; Jang, Ji Hoon; Kim, Kyung Min, et alARTICLE851 A hybrid solar cell fabricated using amorphous silicon and a fullerene derivative
2013-11Pyrrolo[3,2-b]pyrrole-Based Copolymers as Donor Materials for Organic PhotovoltaicsSong, Suhee; Ko, Seo-Jin; Shin, Hyunmin, et alARTICLE993 Pyrrolo[3,2-b]pyrrole-Based Copolymers as Donor Materials for Organic Photovoltaics
2013-11Low bandgap small molecules based on 2,2-bithiophene-3,3-dicarboximide for soluble-processed solar cellsSong, Suhee; Kim, Taehyo; Park, Hyeji, et alARTICLE893 Low bandgap small molecules based on 2,2-bithiophene-3,3-dicarboximide for soluble-processed solar cells
2013-11Acid-functionalized fullerenes used as interfacial layer materials in inverted polymer solar cellsChoi, Hyosung; Lee, Junghoon; Lee, Wonho, et alARTICLE1238 Acid-functionalized fullerenes used as interfacial layer materials in inverted polymer solar cells
2013-10Microfluidic approach toward continuous and ultrafast synthesis of metal-organic framework crystals and hetero structures in confined microdropletsFaustini, Marco; Kim, Jun; Jeong, Guan-Young, et alARTICLE1354 Microfluidic approach toward continuous and ultrafast synthesis of metal-organic framework crystals and hetero structures in confined microdroplets
2013-09Versatile surface plasmon resonance of carbon-dot-supported silver nanoparticles in polymer optoelectronic devicesChoi, Hyosung; Ko, Seo-Jin; Choi, Yuri, et alARTICLE1331 Versatile surface plasmon resonance of carbon-dot-supported silver nanoparticles in polymer optoelectronic devices
2013-09Dithieno[3,2-b:2′,3′-d]pyrrole and benzothiadiazole-based semicrystalline copolymer for photovoltaic devices with indene-C60 BisadductLee, Wonho; Kim, Gi-Hwan; Jeong, Eunjae, et alARTICLE887 Dithieno[3,2-b:2′,3′-d]pyrrole and benzothiadiazole-based semicrystalline copolymer for photovoltaic devices with indene-C60 Bisadduct
2013-09Enhanced efficiency of single and tandem organic solar cells incorporating a diketopyrrolopyrrole-based low-bandgap polymer by utilizing combined ZnO/polyelectrolyte electron-transport layersJo, Jang; Pouliot, Jean-Rmi; Wynands, David, et alARTICLE865 Enhanced efficiency of single and tandem organic solar cells incorporating a diketopyrrolopyrrole-based low-bandgap polymer by utilizing combined ZnO/polyelectrolyte electron-transport layers
2013-08Redox-active charge carriers of conducting polymers as a tuner of conductivity and its potential windowPark, Han-Saem; Ko, Seo-Jin; Park, Jeong-Seok, et alARTICLE1035 Redox-active charge carriers of conducting polymers as a tuner of conductivity and its potential window
2013-08Synthesis of the novel 2,2-bithiophene-3,3-dicarboximide-based conjugated copolymers for OPVsSong, Suhee; Kim, Taehyo; Bang, Su Yeon, et alARTICLE929 Synthesis of the novel 2,2-bithiophene-3,3-dicarboximide-based conjugated copolymers for OPVs
2013-06High-efficiency polymer solar cells with a cost-effective quinoxaline polymer through nanoscale morphology control induced by practical processing additivesKim, Yiho; Yeom, Hye Rim; Kim, Jin Young, et alARTICLE1002 High-efficiency polymer solar cells with a cost-effective quinoxaline polymer through nanoscale morphology control induced by practical processing additives
2013-06Highly efficient plasmonic organic optoelectronic devices based on a conducting polymer electrode incorporated with silver nanoparticlesKo, Seo-Jin; Choi, Hyosung; Lee, Wonho, et alARTICLE1056 Highly efficient plasmonic organic optoelectronic devices based on a conducting polymer electrode incorporated with silver nanoparticles
2013-06Highly Efficient Red-Emitting Hybrid Polymer Light-Emitting Diodes via Forster Resonance Energy Transfer Based on Homogeneous Polymer Blends with the Same Polyfluorene BackboneLee, Bo Ram; Lee, Wonho; Thanh Luan Nguyen, et alARTICLE935 Highly Efficient Red-Emitting Hybrid Polymer Light-Emitting Diodes via Forster Resonance Energy Transfer Based on Homogeneous Polymer Blends with the Same Polyfluorene Backbone
2013-05Multipositional silica-coated silver nanoparticles for high-performance polymer solar cellsChoi, Hyosung; Lee, Jung-Pil; Ko, Seo-Jin, et alARTICLE924 Multipositional silica-coated silver nanoparticles for high-performance polymer solar cells
2013-05Synthesis of a conjugated copolymer with benzodithiophene and benzimidazole unitsSong, Suhee; Ko, Seo-Jin; Kim, Ju Ae, et alARTICLE837 Synthesis of a conjugated copolymer with benzodithiophene and benzimidazole units
2013-05Pyrrolo[3,2-b]pyrrole based small molecules as donor materials for OPVsSong, Suhee; Ko, Seo-Jin; Shin, Hyunmin, et alARTICLE878 Pyrrolo[3,2-b]pyrrole based small molecules as donor materials for OPVs
2013-03Effects of Ionic Liquid Molecules in Hybrid PbS Quantum Dot-Organic Solar CellsKim, Gi-Hwan; Kim, Hak-Beom; Walker, Bright, et alARTICLE1076 Effects of Ionic Liquid Molecules in Hybrid PbS Quantum Dot-Organic Solar Cells
2012-12Replacing 2,1,3-benzothiadiazole with 2,1,3-naphthothiadiazole in PCDTBT: towards a low bandgap polymer with deep HOMO energy levelKim, Jonggi; Yun, Myoung Hee; Kim, Gi-Hwan, et alARTICLE970 Replacing 2,1,3-benzothiadiazole with 2,1,3-naphthothiadiazole in PCDTBT: towards a low bandgap polymer with deep HOMO energy level
2012-12Synthesis of the pyrrolo[3,2-b]pyrrole-based copolymer with enhanced open circuit voltageSong, Suhee; Ko, Seo-Jin; Shin, Hyunmin, et alARTICLE949 Synthesis of the pyrrolo[3,2-b]pyrrole-based copolymer with enhanced open circuit voltage

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