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Regional Analytical Science

Detailed research information Jeonju Center > Regional Analytical Science > Major Research Activities Home

Research Focus

  • Research and analysis for nano-/carbon-based materials
  • Development of analytical method for heat dissipation materials/components based on petroleum
  • Research and development on physical properties of new anode active materials for metal-oxide based secondary batteries
  • Structural analysis of two-dimensional (2D) thin film materials based on in situ and atomic resolution transmission electron microscope (TEM)
  • Study of metal-insulator transition (MIT) and 2D transition dichalcogenide (TMD) materials, and their applications
  • Research on the function of phytohormones for growth inhibition of human breast cancer cells

Representative Research Cases

Investigation of the structural and electrical phase transition in a single core-shell-like VO2 nanobeam
Appl. Surf. Sci, 2018, 455, pp. 1185-1191 (SCI IF : 4.439)

  • Fabrication and characterization of VO2 metal-insulation-transition (MIT) single crystal nanobeam with core-shell-like structure
  • Observation of the phase transition properties of core-shell-like VO2 nanobeam using temperature-dependent Raman and electrical characterization
  • Raman data and electrical resistance of VO<sub>2</sub> nanobeamsRaman data and electrical resistance of VO2 nanobeams

Research on the growth and growth mechanism of Ag2S-catalyzed ZnS nanowires (NWs) using in situ TEM
Appl. Surf. Sci, 2018, 436, pp. 556-561 (SCI IF : 4.439)

  • Investigation of the semiconductor-catalyzed formation of semiconductor NWs ( Ag2S-catalyzed ZnS NWs)
  • Study of growth mechanism for semiconductor-catalyzed semconductor NWs using structural/chemical analyses of semiconducting NWs, and observation of phase transition with in situ heating based on Cs-corrected TEM
  • HR-STEM, In situ heating TEM and schematic diagram of Ag<sub>2</sub>S catalyzed ZnS nanowire  HR-STEM, In situ heating TEM and schematic diagram of Ag2S catalyzed ZnS nanowire