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Showing results 1 to 4 of 4

  • Lee, Gi-Baek ; 
  • Joo, Won-Hyo ; 
  • Kang, Ho-Young ; 
  • Lee, Jae-Chan ; 
  • Ahn, In-Kyung ; 
  • Kim, Ji-Yong ; 
  • Kim, Hyoung Gyun ; 
  • Kim, Miyoung ; 
  • Nam, Dae-Hyun ; 
  • Joo, Young-Chang
  • 2022-03
  • Lee, Gi-Baek. (2022-03). Fabrication of Ni Nanoparticle-Embedded Porous Carbon Nanofibers Through Selective Etching of Selectively Oxidized MgO. Electronic Materials Letters, 18(2), 198–204. doi: 10.1007/s13391-021-00331-7
  • Korean Institute of Metals and Materials
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Quasi-graphitic carbon shell-induced Cu confinement promotes electrocatalytic CO2 reduction toward C2+ products

  • Kim, Ji-Yong ; 
  • Hong, Deokgi ; 
  • Lee, Jae-Chan ; 
  • Kim, Hyoung Gyun ; 
  • Lee, Sungwoo ; 
  • Shin, Sangyong ; 
  • Kim, Beomil ; 
  • Lee, Hyunjoo ; 
  • Kim, Miyoung ; 
  • Oh, Jihun ; 
  • et al
  • 2021-06
  • Kim, Ji-Yong. (2021-06). Quasi-graphitic carbon shell-induced Cu confinement promotes electrocatalytic CO2 reduction toward C2+ products. Nature Communications, 12(1), 3765. doi: 10.1038/s41467-021-24105-9
  • Nature Publishing Group
  • View : 604
  • Download : 114

Thermodynamically driven self-formation of Ag nanoparticles in Zn-embedded carbon nanofibers for efficient electrochemical CO2reduction

  • Lee, Gi-Baek ; 
  • Ahn, In-Kyoung ; 
  • Joo, Won-Hyo ; 
  • Lee, Jae-Chan ; 
  • Kim, Ji-Yong ; 
  • Hong, Deokgi ; 
  • Kim, Hyoung Gyun ; 
  • Lee, Jusang ; 
  • Kim, Miyoung ; 
  • Nam, Dae-Hyun ; 
  • et al
  • 2021-07
  • Lee, Gi-Baek. (2021-07). Thermodynamically driven self-formation of Ag nanoparticles in Zn-embedded carbon nanofibers for efficient electrochemical CO2reduction. doi: 10.1039/d1ra02463a
  • Royal Society of Chemistry
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  • Download : 177
  • Jung, Youngran ; 
  • Velmurugan, Adith Ramakrishnan ; 
  • Kim, Intae ; 
  • Kim, Hyeontae ; 
  • Kim, Geon-Woo ; 
  • Kim, Ji-Yong ; 
  • Jeon, Jiwan ; 
  • Lee, Yujin ; 
  • Lee, Jae-Chan ; 
  • Park, Seo-June ; 
  • et al
  • 2026-01
  • Nano Energy, v.147
  • Elsevier
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