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Dive into the research topics where Young Kwan Jung is active.

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Featured researches published by Young Kwan Jung.


Journal of Materials Chemistry | 2008

New amorphous semiconducting copolymers containing fluorene and thiophene moieties for organic thin-film transistors

Hoyoul Kong; Dong Hoon Lee; In-Nam Kang; Eunhee Lim; Young Kwan Jung; Jong-Hwa Park; Taek Ahn; Mi Hye Yi; Chan Eon Park; Hong Ku Shim

New amorphous semiconducting materials consisting of fluorene-based thiophene copolymers, poly(2-(5-(9,9-dibutyl-9 H-fluoren-2-yl)-3-hexylthiophen-2-yl)-5-(3-hexylthiophen-2-yl)thieno[3,2-b]thiophene) P1 and poly(2-(5-(9,9-dibutyl-9 H-fluoren-2-yl)-4-hexylthiophen-2-yl)-5-(4-hexylthiophen-2-yl)thieno[3,2-b]thiophene) P2, have been successfully synthesized via a palladium-catalyzed Suzuki coupling reaction. The number-average molecular weights (Mn) of P1 and P2 were found to be 18 300, and 15 800, respectively. These polymers dissolve in common organic solvents such as chloroform, chlorobenzene, and toluene. The UV-vis absorption maxima of P1 and P2 appeared at 436 and 427 nm in solution and 441 and 431 nm in the film state, respectively. X-Ray diffraction (XRD) analysis showed no reflection peaks indicating amorphous collections of randomly oriented polymer chains. Atomic force microscopy (AFM) images of P1 and P2 showed amorphous film morphologies. Field-effect transistor mobilities of stable amorphous OTFTs of P1 and P2 under ambient conditions have been achieved up to 5.4 × 10−4 cm2V−1 s−1 and 1.6 × 10−4 cm2V−1 s−1, respectively. The high stability and mobility of fluorene-based thiophene copolymers in the amorphous state make them a new family of promising candidates for organic thin-film transistors.


Organic Letters | 2007

Soluble and easily crystallized anthracene derivatives: precursors of solution-processable semiconducting molecules.

Jong-Hwa Park; Dae Sung Chung; Jong-Won Park; Taek Ahn; Hoyoul Kong; Young Kwan Jung; Jonghee Lee; Mi Hye Yi; Chan Eon Park; Soon-Ki Kwon, ,§ and; Hong-Ku Shim


Journal of Polymer Science Part A | 2007

Synthesis of new polyfluorene copolymers with a comonomer containing triphenylamine units and their applications in white‐light‐emitting diodes

Sang Kyu Lee; Taek Ahn; Nam Sung Cho; Jeong-Ik Lee; Young Kwan Jung; Jonghee Lee; Hong Ku Shim


Journal of Polymer Science Part A | 2008

Synthesis and electroluminescent properties of fluorene-based copolymers containing electron-withdrawing thiazole derivatives

In Hwan Jung; Young Kwan Jung; Jonghee Lee; Jong-Hwa Park; Han Young Woo; Jeong-Ik Lee; Hye Yong Chu; Hong-Ku Shim


Chemistry of Materials | 2009

New Semiconducting Polymers Containing 3,6-Dimethyl(thieno[3,2-b]thiophene or selenopheno[3,2-b]selenophene) for Organic Thin-Film Transistors

Hoyoul Kong; Young Kwan Jung; Nam Sung Cho; In-Nam Kang; Jong-Hwa Park; Shinuk Cho; Hong-Ku Shim


Organic Electronics | 2007

Polymeric light emitting properties and structural relationships of fluorene-based conjugated copolymers containing various hole transporting derivatives

Jong-Hwa Park; Nam Sung Cho; Young Kwan Jung; Hoon-Je Cho; Hong Ku Shim; Hyoseok Kim; Yoon Sup Lee


Journal of Polymer Science Part A | 2006

Fluorene copolymers containing bithiophene/2,5‐ or 2,6‐pyridine units: A study of their optical, electrochemical, and electroluminescence properties

Young Kwan Jung; Jaemin Lee; Sang Kyu Lee; Hoon-Je Cho; Hong Ku Shim


Journal of Polymer Science Part A | 2007

White electroluminescence from a single polyfluorene containing bis‐DCM units

Sang Kyu Lee; Byung-Jun Jung; Taek Ahn; Young Kwan Jung; Jeong-Ik Lee; In-Nam Kang; Jonghee Lee; Jong-Hwa Park; Hong Ku Shim


Journal of Polymer Science Part A | 2008

Alternating fluorene copolymers containing isothianaphthene derivatives: A study of their aggregation properties and small band gap

Young Kwan Jung; Hyoseok Kim; Jong-Hwa Park; Jaemin Lee; Sang Kyu Lee; Yoon Sup Lee; Hong Ku Shim


Journal of Polymer Science Part A | 2007

Phenothiazine‐S,S‐dioxide‐ and fluorene‐based light‐emitting polymers: Introduction of e−‐deficient S,S‐dioxide into e−‐rich phenothiazine

Jonghee Lee; Jeong-Ik Lee; Moo-Jin Park; Young Kwan Jung; Nam Sung Cho; Hoon Je Cho; Do-Hoon Hwang; Sang Kyu Lee; Jong-Hwa Park; Jiwon Hong; Hye Yong Chu; Hong Ku Shim

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Jonghee Lee

Electronics and Telecommunications Research Institute

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In-Nam Kang

Catholic University of Korea

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Jeong-Ik Lee

Electronics and Telecommunications Research Institute

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Nam Sung Cho

Electronics and Telecommunications Research Institute

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Taek Ahn

Kyungsung University

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Chan Eon Park

Pohang University of Science and Technology

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