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Song, Myoung Hoon (송명훈)

Department
Department of Materials Science and Engineering(신소재공학과)
Website
http://mhsong.unist.ac.kr/
Lab
Organic Photonics & Optoelectronics Lab. (유기광전소자 연구실)
Research Keywords
유기광전소자, 페로브스카이트 발광소자 태양전지, 탠덤태양전지, 광결정, 액정, Organic optoelectrics, perovskite light-emitting diodes, surface treatment, Tandem Solar Cells, Photonic Crystals, Liquid Crystals
Research Interests
My research group team has devoted our best efforts to optimize and enhance the efficiencies of organic or perovskite-based optoelectronic devices such as light-emitting diodes (LEDs), solar cells, and lasing applications by using combined multidisciplinary approach from synthesis and preparation of nanomaterials of ZnO, SnO, perovskite, and optical and electrical characterization through several methods, and applications for optoelectronic fields.
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Issue DateTitleAuthor(s)TypeViewAltmetrics
2016-09Improved performance of perovskite light-emitting diodes using a PEDOT:PSS and MoO3 composite layerKim, Da Bin; Yu, Jaw Choul; Nam, Yun Seok, et alARTICLE778 Improved performance of perovskite light-emitting diodes using a PEDOT:PSS and MoO3 composite layer
2016-08Improving the Stability and Performance of Perovskite Light-Emitting Diodes by Thermal Annealing TreatmentYu, Jae Choul; Kim, Dae Won; Kim, Da Bin, et alARTICLE774 Improving the Stability and Performance of Perovskite Light-Emitting Diodes by Thermal Annealing Treatment
2016-08Large Pulsed Electron Beam Welded Percolation Networks of Silver Nanowires for Transparent and Flexible ElectrodesKim, Jisoo; Nam, Yun Seok; Song, Myoung Hoon, et alARTICLE714 Large Pulsed Electron Beam Welded Percolation Networks of Silver Nanowires for Transparent and Flexible Electrodes
2016-08Photo-patternable and transparent films using cellulose nanofibers for stretchable origami electronicsJi, Sangyoon; Hyun, Byung Gwan; Kim, Kukjoo, et alARTICLE1027 Photo-patternable and transparent films using cellulose nanofibers for stretchable origami electronics
2016-04High-Performance Perovskite Light-emitting Diodes via Morphological Control of Perovskite FilmYu, Jae Choul; Kim, Da Bin; Jung, Eui Dae, et alARTICLE1193 High-Performance Perovskite Light-emitting Diodes via Morphological Control of Perovskite Film
2016-01Highly efficient inverted bulk-heterojunction solar cells with a gradiently-doped ZnO layerNho, Sungho; Baek, Gyoelim; Park, Sujung, et alARTICLE771 Highly efficient inverted bulk-heterojunction solar cells with a gradiently-doped ZnO layer
2015-09Highly Efficient Flexible Highly Efficient Flexible Optoelectronic Devices Using Metal Nanowire-Conducting Polymer Composite Transparent ElectrodeJung, Eui Dae; Nam, Yun Seok; Seo, Houn, et alARTICLE1009 Highly Efficient Flexible Highly Efficient Flexible Optoelectronic Devices Using Metal Nanowire-Conducting Polymer Composite Transparent Electrode
2015-08High-density Cu-In intermetallic nanocrystal layers: towards high-efficiency printable CuInSe2 solar cellsLee, Byung-Seok; Hwang, Yoonjung; Pham, Hong Nhung, et alARTICLE1112 High-density Cu-In intermetallic nanocrystal layers: towards high-efficiency printable CuInSe2 solar cells
2015-08High-resolution electrohydrodynamic jet printing of small-molecule organic light-emitting diodesKim, Kukjoo; Kim, Gyeomuk; Lee, Bo Ram, et alARTICLE1026 High-resolution electrohydrodynamic jet printing of small-molecule organic light-emitting diodes
2015-06A well-aligned simple cubic blue phase for a liquid crystal laserKim, Kibeom; Hur, Sung-Taek; Kim, Sunhwan, et alARTICLE870 A well-aligned simple cubic blue phase for a liquid crystal laser
2015-06Amine-Based Interfacial Molecules for Inverted Polymer-Based Optoelectronic DevicesLee, Bo Ram; Lee, Seungjin; Park, Jong Hyun, et alARTICLE1020 Amine-Based Interfacial Molecules for Inverted Polymer-Based Optoelectronic Devices
2015-06High-performance planar perovskite optoelectronic devices: A morphological and interfacial control by polar solvent treatmentYu, Jae Choul; Kim, Da Bin; Baek, Gyoelim, et alARTICLE1039 High-performance planar perovskite optoelectronic devices: A morphological and interfacial control by polar solvent treatment
2014-12Enhanced performance of polymer bulk heterojunction solar cells employing multifunctional iridium complexesYun, Myoung Hee; Lee, Eung; Lee, Woochul, et alARTICLE734 Enhanced performance of polymer bulk heterojunction solar cells employing multifunctional iridium complexes
2014-11Interface-controlled synthesis of heterodimeric silver-carbon nanoparticles derived from polysaccharidesChoi, Yuri; Ryu, Gyeong Hee; Min, Sa Hoon, et alARTICLE716 Interface-controlled synthesis of heterodimeric silver-carbon nanoparticles derived from polysaccharides
2014-09Highly efficient inverted polymer light-emitting diodes using surface modifications of ​ZnO layerLee, Bo Ram; Jung, Eui Dae; Park, Ji Sun, et alARTICLE876 Highly efficient inverted polymer light-emitting diodes using surface modifications of ​ZnO layer
2014-09Combination effect of polar solvent treatment on ZnO and polyfluorene-based polymer blends for highly efficient blue-based hybrid organic-inorganic polymer light-emitting diodesLee, Seungjin; Lee, Bo Ram; Kim, Ji-Seon, et alARTICLE674 Combination effect of polar solvent treatment on ZnO and polyfluorene-based polymer blends for highly efficient blue-based hybrid organic-inorganic polymer light-emitting diodes
2014-02Highly efficient polymer-based optoelectronic devices using PEDOT:PSS and a go composite layer as a hole transport layerYu, Jae Choul; Jang, Jeong In; Lee, Bo Ram, et alARTICLE736 Highly efficient polymer-based optoelectronic devices using PEDOT:PSS and a go composite layer as a hole transport layer
2014-01Amine-Based Polar Solvent Treatment for Highly Efficient Inverted Polymer Solar CellsLee, Bo Ram; Jung, Eui Dae; Nam, Yun Seok, et alARTICLE831 Amine-Based Polar Solvent Treatment for Highly Efficient Inverted Polymer Solar Cells
2013-09Versatile surface plasmon resonance of carbon-dot-supported silver nanoparticles in polymer optoelectronic devicesChoi, Hyosung; Ko, Seo-Jin; Choi, Yuri, et alARTICLE996 Versatile surface plasmon resonance of carbon-dot-supported silver nanoparticles in polymer optoelectronic devices
2013-06Highly efficient plasmonic organic optoelectronic devices based on a conducting polymer electrode incorporated with silver nanoparticlesKo, Seo-Jin; Choi, Hyosung; Lee, Wonho, et alARTICLE828 Highly efficient plasmonic organic optoelectronic devices based on a conducting polymer electrode incorporated with silver nanoparticles

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