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Park, Jang-Ung (박장웅)

Department
School of Materials Science and Engineering(신소재공학부)
Research Interests
Wireless wearable electronics, flexible electronics, printed electronics, nano-bio interfaces
Lab
Flexible Nano-electronics & Biotechnology Lab
E-Mail
jangung@unist.ac.kr
Website
http://wearable.unist.ac.kr/
This table browses all dspace content
Issue DateTitleAuthor(s)TypeViewAltmetrics
201605Fully-integrated, bezel-less transistor arrays using reversibly foldable interconnects and stretchable origami substratesKim, Mijung; Park, Jihun; Ji, Sangyoon, et alARTICLE236 Fully-integrated, bezel-less transistor arrays using reversibly foldable interconnects and stretchable origami substrates
201602A high-performance, flexible and robust metal nanotrough-embedded transparent conducting film for wearable touch screen panelsIm, Hyeon-Gyun; An, Byeong Wan; Jin, Jungho, et alARTICLE277 A high-performance, flexible and robust metal nanotrough-embedded transparent conducting film for wearable touch screen panels
201601Stretchable, Transparent Electrodes as Wearable Heaters Using Nanotrough Networks of Metallic Glasses with Superior Mechanical Properties and Thermal StabilityAn, Byeong Wan; Gwak, Eun-Ji; Kim, Kukjoo, et alARTICLE353 Stretchable, Transparent Electrodes as Wearable Heaters Using Nanotrough Networks of Metallic Glasses with Superior Mechanical Properties and Thermal Stability
201509Stretchable and transparent electrodes based on in-plane structuresKim, Kukjoo; Kim, Joohee; Hyun, Byung Gwan, et alARTICLE236 Stretchable and transparent electrodes based on in-plane structures
201509Highly Efficient Flexible Highly Efficient Flexible Optoelectronic Devices Using Metal Nanowire-Conducting Polymer Composite Transparent ElectrodeSong, Myoung Hoon; Jung, Eui Dae; Nam, Yun Seok, et alARTICLE438 Highly Efficient Flexible Highly Efficient Flexible Optoelectronic Devices Using Metal Nanowire-Conducting Polymer Composite Transparent Electrode
201508High-resolution electrohydrodynamic jet printing of small-molecule organic light-emitting diodesSong, Myoung Hoon; Park, Jang-Ung; Kim, Kukjoo, et alARTICLE505 High-resolution electrohydrodynamic jet printing of small-molecule organic light-emitting diodes
201508High-Resolution Printing of 3D Structures Using an Electrohydrodynamic Inkjet with Multiple Functional InksAn, Byeong Wan; Kim, Kukjoo; Lee, Heejoo, et alARTICLE393 High-Resolution Printing of 3D Structures Using an Electrohydrodynamic Inkjet with Multiple Functional Inks
201506Highly Stretchable 2D Fabrics for Wearable Triboelectric Nanogenerator under Harsh EnvironmentsPark, Jang-Ung; Kim, Kyeong Nam; Chun, Jinsung, et alARTICLE412 Highly Stretchable 2D Fabrics for Wearable Triboelectric Nanogenerator under Harsh Environments
201506Highly Transparent and Stretchable Field-Effect Transistor Sensors Using Graphene-Nanowire Hybrid NanostructuresKim, Joohee; Lee, Mi-Sun; Jeon, Sangbin, et alARTICLE499 Highly Transparent and Stretchable Field-Effect Transistor Sensors Using Graphene-Nanowire Hybrid Nanostructures
201505Direct Printing of Reduced Graphene Oxide on Planar or Highly Curved Surfaces with High Resolutions Using ElectrohydrodynamicsAn, Byeong Wan; Kim, Kukjoo; Kim, Mijung, et alARTICLE206 Direct Printing of Reduced Graphene Oxide on Planar or Highly Curved Surfaces with High Resolutions Using Electrohydrodynamics
201501Studies on the mechanical stretchability of transparent conductive film based on graphene-metal nanowire structuresLee, Mi-Sun; Kim, Joohee; Park, Jihun, et alARTICLE396 Studies on the mechanical stretchability of transparent conductive film based on graphene-metal nanowire structures
201411Stretchable and Transparent Electrodes using Hybrid Structures of Graphene-Metal Nanotrough Networks with High Performances and Ultimate UniformityAn, Byeong Wan; Hyun, Byung Gwan; Kim, So-Yun, et alARTICLE359 Stretchable and Transparent Electrodes using Hybrid Structures of Graphene-Metal Nanotrough Networks with High Performances and Ultimate Uniformity
201405In-situ Synthesis of Carbon Nanotube-Graphite Electronic Devices and Their Integrations onto Surfaces of Live Plants and InsectsLee, Kyongsoo; Park, Jihun; Lee, Mi-Sun, et alARTICLE480 In-situ Synthesis of Carbon Nanotube-Graphite Electronic Devices and Their Integrations onto Surfaces of Live Plants and Insects
201310Photopatternable and refractive-index-tunable sol-gel-derived silica-titania nanohybrid materialsKang, Dong Jun; Park, Go Un; Lee, Hyeon Hwa, et alARTICLE359 Photopatternable and refractive-index-tunable sol-gel-derived silica-titania nanohybrid materials
201307Metal salt-derived In-Ga-Zn-O semiconductors incorporating formamide as a novel co-solvent for producing solution-processed, electrohydrodynamic-jet printed, high performance oxide transistorsJeong, Sunho; Lee, Ji-Yoon; Lee, Sun Sook, et alARTICLE377 Metal salt-derived In-Ga-Zn-O semiconductors incorporating formamide as a novel co-solvent for producing solution-processed, electrohydrodynamic-jet printed, high performance oxide transistors
201306High-Performance, Transparent, and Stretchable Electrodes Using Graphene-Metal Nanowire Hybrid StructuresLee, Mi-Sun; Lee, Kyongsoo; Kim, So-Yun, et alARTICLE385 High-Performance, Transparent, and Stretchable Electrodes Using Graphene-Metal Nanowire Hybrid Structures
201304In situ observations of gas phase dynamics during graphene growth using solid-state carbon sourcesKwak, Jinsung; Kwon, Tae-Yang; Chu, Jae Hwan, et alARTICLE364 In situ observations of gas phase dynamics during graphene growth using solid-state carbon sources
201304Air-stable, surface-oxide free Cu nanoparticles for highly conductive Cu ink and their application to printed graphene transistorsJeong, Sunho; Lee, Su Hyeon; Jo, Yejin, et alARTICLE481 Air-stable, surface-oxide free Cu nanoparticles for highly conductive Cu ink and their application to printed graphene transistors
201202Synthesis of monolithic graphene-graphite integrated electronicsPark, Jang-Ung; Nam, SungWoo; Lee, Mi-Sun, et alARTICLE346 Synthesis of monolithic graphene-graphite integrated electronics
201002Nanoscale, Electrified Liquid Jets for High-Resolution Printing of ChargePark, Jang-Ung; Park, Jang-Ung; Lee, Sangkyu, et alARTICLE272 Nanoscale, Electrified Liquid Jets for High-Resolution Printing of Charge

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