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Achieving an excellent efficiency of 11.57% in a polymer solar cell submodule with a 55 cm2 active area using 1D/2A terpolymers and environmentally friendly nonhalogenated solvents

  • Jung, Hyeonwoo ; 
  • Kim, Jongyoun ; 
  • Park, Jaehyoung ; 
  • Jahankhan, Muhammad ; 
  • Hwang, Youngjun ; 
  • Kang, Byeongjae ; 
  • Kim, Hyerin ; 
  • Park, Ho-Yeol ; 
  • Ahn, Pyeongkang ; 
  • Um, DuHyeon ; 
  • et al
  • 2024-01
  • Jung, Hyeonwoo. (2024-01). Achieving an excellent efficiency of 11.57% in a polymer solar cell submodule with a 55 cm2 active area using 1D/2A terpolymers and environmentally friendly nonhalogenated solvents. EcoMat, 6(1). doi: 10.1002/eom2.12421
  • Wiley
  • View : 317
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  • Kim, Jongyoun ; 
  • Kim, Minkyoung ; 
  • Jung, Hyeonwoo ; 
  • Park, Jaehyoung ; 
  • Jun, Byoung Ok ; 
  • Kang, Byeongjae ; 
  • Jang, Jae Eun ; 
  • Lee, Youngu
  • 2022-11
  • Kim, Jongyoun. (2022-11). High-Quality Microprintable and Stretchable Conductors for High- Performance 5G Wireless Communication. ACS Applied Materials & Interfaces, 14(47), 53250–53260. doi: 10.1021/acsami.2c18424
  • American Chemical Society
  • View : 711
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High-resolution printing of micrometer-scale copper electrode: From ink formulation and process optimization to application

  • Kim, Jongyoun ; 
  • Kang, Byeongjae ; 
  • Kim, Hyuntae ; 
  • Choi, Su Hyun ; 
  • Park, Jaehyoung ; 
  • Jung, Hyeonwoo ; 
  • Hwang, Youngjun ; 
  • Kwon, Sin ; 
  • Woo, Kyoohee ; 
  • Lee, Youngu
  • 2024-01
  • Kim, Jongyoun. (2024-01). High-resolution printing of micrometer-scale copper electrode: From ink formulation and process optimization to application. Journal of Materials Research and Technology, 28, 131–138. doi: 10.1016/j.jmrt.2023.11.286
  • Elsevier
  • View : 313
  • Download : 200
  • Maheshwaran, Athithan ; 
  • Bae, Hyejeong ; 
  • Park, Jaehyoung ; 
  • Jung, Hyeonwoo ; 
  • Hwang, Youngjun ; 
  • Kim, Jongyoun ; 
  • Park, Chaehyun ; 
  • Kang, Byeongjae ; 
  • Song, Myungkwan ; 
  • Lee, Youngu
  • 2023-09
  • Maheshwaran, Athithan. (2023-09). Low-Temperature Cross-Linkable Hole Transport Materials for Solution-Processed Quantum Dot and Organic Light-Emitting Diodes with High Efficiency and Color Purity. ACS Applied Materials & Interfaces, 15(38), 45167–45176. doi: 10.1021/acsami.3c09106
  • American Chemical Society
  • View : 329
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  • Gu, Ji-Woo ; 
  • Kim, Jongyoun ; 
  • Go, Myeong-Seok ; 
  • Jung, Hyeonwoo ; 
  • Hwang, Youngjun ; 
  • Park, Jaehyoung ; 
  • Kang, Byeongjae ; 
  • Kim, Do-Won ; 
  • Ahn, Seokhoon ; 
  • Lim, Jae Hyuk ; 
  • et al
  • 2024-10
  • Gu, Ji-Woo. (2024-10). Neuron-astrocyte interaction-inspired percolative networks with metal microdendrites and nanostars for ultrasensitive and transparent electronic skins. Chemical Engineering Journal, 498. doi: 10.1016/j.cej.2024.155175
  • Elsevier
  • View : 364
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  • Hwang, Youngjun ; 
  • Jung, Hyeonwoo ; 
  • Kim, Jongyoun ; 
  • Park, Jaehyoung ; 
  • Maheshwaran, Athithan ; 
  • Kang, Byeongjae ; 
  • Lee, Youngu
  • 2025-01
  • Hwang, Youngjun. (2025-01). Photothermally Cross-Linkable Polymeric Hole Transport Material Functionalized with Azide for High-Performance Quantum Dot Light-Emitting Diodes. ACS Applied Materials & Interfaces, 17(4), 6668–6678. doi: 10.1021/acsami.4c22232
  • American Chemical Society
  • View : 383
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  • Kim, Jongyoun ; 
  • Kim, Minkyoung ; 
  • Jung, Hyeonwoo ; 
  • Park, Jaehyoung ; 
  • Lee, Youngu
  • 2023-02
  • Kim, Jongyoun. (2023-02). Ultrastable 2D material-wrapped copper nanowires for high-performance flexible and transparent energy devices. Nano Energy, 106. doi: 10.1016/j.nanoen.2022.108067
  • Elsevier
  • View : 497
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Vitamin C-induced CO2 capture enables high-rate ethylene production in CO2 electroreduction

  • Kim, Jongyoun ; 
  • Lee, Taemin ; 
  • Jung, Hyun Dong ; 
  • Kim, Minkyoung ; 
  • Eo, Jungsu ; 
  • Kang, Byeongjae ; 
  • Jung, Hyeonwoo ; 
  • Park, Jaehyoung ; 
  • Bae, Daewon ; 
  • Lee, Yujin ; 
  • et al
  • 2024-01
  • Kim, Jongyoun. (2024-01). Vitamin C-induced CO2 capture enables high-rate ethylene production in CO2 electroreduction. Nature Communications, 15(1). doi: 10.1038/s41467-023-44586-0
  • Springer Nature
  • View : 427
  • Download : 57
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