Browsing by Titles

Showing results 1 to 10 of 10

  • Kim, Hwajoong
  • Kim, Daehyeon
  • Kim, Jinho
  • Lee, Yukye
  • Shin, Minchang
  • Kim, Jimin
  • Bossuyt, Fransiska M.
  • Lee, Gun-Hee
  • Lee, Byeongmoon
  • Taylor, William R.
  • et al
  • 2025-08
  • npj Flexible Electronics, v.9, no.1
  • Nature Publishing Group
  • View : 3432
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  • Woo, Seohyun
  • Kim, Hwajoong
  • Kim, Jinho
  • Ryu, Hyeji
  • Lee, Jaehong
  • 2023
  • Woo, Seohyun. (2023). Fiber-Based Flexible Ionic Diode with High Robustness and Rectifying Performance: Toward Electronic Textile Circuits. Advanced Electronic Materials. doi: 10.1002/aelm.202300653
  • Wiley
  • View : 195
  • Download : 0
  • 2019-03
  • Lee, SangHoon. (2019-03). From flexible electronics technology in the era of IoT and artificial intelligence toward future implanted body sensor networks. APL Materials, 7(3), 031302. doi: 10.1063/1.5063498
  • American Institute of Physics Publising LLC
  • View : 871
  • Download : 115
  • Kim, Hwajoong
  • Shaqeel, Ammar
  • Han, Solbi
  • Kang, Junseo
  • Yun, Jieun
  • Lee, Mugeun
  • Lee, Seonggyu
  • Kim, Jinho
  • Noh, Seungbeom
  • Choi, Minyoung
  • et al
  • 2021-08
  • Kim, Hwajoong. (2021-08). In Situ Formation of Ag Nanoparticles for Fiber Strain Sensors: Toward Textile-Based Wearable Applications. ACS Applied Materials & Interfaces, 13(33), 39868–39879. doi: 10.1021/acsami.1c09879
  • American Chemical Society
  • View : 591
  • Download : 0
  • 2014-04
  • Park, Gwangmin. (2014-04). Integrated modeling and analysis of dynamics for electric vehicle powertrains. Expert Systems with Applications, 41(5), 2595–2607. doi: 10.1016/j.eswa.2013.10.007
  • Elsevier Ltd
  • View : 858
  • Download : 0
  • Roh, Jihun
  • Kim, Joowon
  • Lee, Hyungjin
  • Do, Namgyu
  • Lyoo, Jeyne
  • Manjon-Sanz, Alicia Maria
  • Kitahara, Ginga
  • Torii, Shuki
  • Hong, Seung-Tae
  • 2025-05
  • Chemistry of Materials, v.37, no.10, pp.3720 - 3732
  • American Chemical Society
  • View : 148
  • Download : 0
  • Swain, Jaykishon
  • Hajra, Sugato
  • Das, Niharika
  • Parhi, Pankaj
  • Panda, Swati
  • Priyadarshini, Anulipsa
  • Panda, Jagannath
  • Sahu, Alok Kumar
  • Alagarsamy, Perumal
  • Vivekananthan, Venkateswaran
  • et al
  • 2023-10
  • Swain, Jaykishon. (2023-10). Spent Catalyst-Derived Mo-MOF: Triboelectric Nanogenerators and Energy Harvesting. Energy Technology, 11(10). doi: 10.1002/ente.202300498
  • John Wiley and Sons Inc
  • View : 254
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  • Jung, Tai-Jong
  • Lee, Hyobin
  • Park, Sun Ho
  • Song, Jihun
  • Park, Joonam
  • Doh, Chil-Hoon
  • Eom, Seong-Wook
  • Yu, Ji-Hyun
  • Lee, Yong Min
  • Ha, Yoon-Cheol
  • 2022-05
  • Jung, Tai-Jong. (2022-05). Statistical and computational analysis for state-of-health and heat generation behavior of long-term cycled LiNi0.8Co0.15Al0.05O2/Graphite cylindrical lithium-ion cells for energy storage applications. Journal of Power Sources, 529. doi: 10.1016/j.jpowsour.2022.231240
  • Elsevier BV
  • View : 228
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  • Byun, Seoungwoo
  • Roh, Youngjoon
  • Kim, Kwang Man
  • Ryou, Myung-Hyun
  • Lee, Yong Min
  • 2020-12
  • Byun, Seoungwoo. (2020-12). Toward understanding the real mechanical robustness of composite electrode impregnated with a liquid electrolyte. doi: 10.1016/j.apmt.2020.100809
  • Elsevier Ltd
  • View : 689
  • Download : 0

Weavable asymmetric carbon nanotube yarn supercapacitor for electronic textiles

  • Choi, Changsoon
  • Park, Jong Woo
  • Kim, Keon Jung
  • Lee, Duck Weon
  • De Andrade, Monica Jung
  • Kim, Shi Hyeong
  • Gambhir, Sanjeev
  • Spinks, Geoffrey M.
  • Baughman, Ray H.
  • Kim, Seon Jeong
  • 2018-04
  • Choi, Changsoon. (2018-04). Weavable asymmetric carbon nanotube yarn supercapacitor for electronic textiles. RSC Advances, 8(24), 13112–13120. doi: 10.1039/c8ra01384e
  • Royal Society of Chemistry
  • View : 806
  • Download : 65
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