SKKU Institute for Convergence - Energy Science

  • Associate Professor Advanced secondary batteries
  • KIM, KI JAE 홈페이지 바로가기
    Lab Advanced Battery Laboratory

Education

  • B.S. 1995 ~ 1999 : Department of Material Science & Engineering, KAIST
  • M.S. 1999 ~ 2001 : Department of Material Science & Engineering, KAIST
  • Ph.D. 2001 ~ 2004 : Department of Material Science & Engineering, KAIST

Experience

  • 2004. 09 ~ 2007. 12 : LG Chem./Research Park/Battery Research and Development (Senior Researcher)
  • 2008. 09 ~ 2016. 02 : Korea Electronics Technology Institute (KETI), Advanced Batteries Research Center (Managerial Researcher)
  • 2016. 02 ~ 2018. 02 : Seoul National University of Science and Technology, Graduate School of Energy and Environment (Assistant Professor)
  • 2018. 03 ~ 2023. 02 : Konkuk University, Department of Energy Engineering (Associate Professor)
  • 2023. 02 ~ present : Sungkyunkwan University, Department of Energy Science (Associate Professor)

Journal Articles

  • (2024)  Two-in-one strategy: Discretely functionalized electrolyte additive for stable lithium metal batteries coupled with Ni-rich cathode.  CHEMICAL ENGINEERING JOURNAL.  486,  1
  • (2024)  Two-in-one strategy for optimizing chemical and structural properties of carbon felt electrodes for vanadium redox flow batteries.  SCIENCE AND TECHNOLOGY OF ADVANCED MATERIALS.  25,  1
  • (2024)  Driving inward growth of lithium metal in hollow microcapsule hosts by heteroatom-controlled nucleation.  CARBON ENERGY.  1,  1
  • (2023)  Stable immobilization of lithium polysulfides using three-dimensional ordered mesoporous Mn2O3 as the host material in lihtium-sulfur batteries.  CARBON ENERGY.  1,  1
  • (2023)  Enabling uniform Li deposition behavior with dynamic electrostatic shield by the single effect of potassium cation additive for dendrite-free lithium metal batteries.  MATERIALS CHEMISTRY FRONTIERS.  7,  19
  • (2023)  Interface-Targeting Individually Functionalized Ionic Additive to Construct Stable Interphase on Selective Electrode Surface for Practical Lithium-Ion Pouch Cells.  ADVANCED FUNCTIONAL MATERIALS.  1,  1
  • (2023)  Flattening of Lithium Plating in Carbonate Electrolytes Enabled by All-In-One Separator.  SMALL.  19,  28
  • (2023)  Booster Adhesion of Crystalline Poly(vinylidene fluoride) Binder by Heat Treatment for Ni-rich Layered Oxide Cathode in Lithium-ion Batteries.  CHEMNANOMAT.  9,  7
  • (2023)  Functional Separator Decorated with Polydopamine and Halloysite Nanotubes to Boost Li<SUP>+</SUP> Transfer in Lithium Metal Batteries.  CHEMNANOMAT.  9,  7
  • (2023)  Boehmite/PAN nanocomposite fibrous separators with superior wettability and thermal properties for sodium-ion batteries with high electrochemical performances.  JOURNAL OF ALLOYS AND COMPOUNDS.  940,  1
  • (2023)  Degradation mechanism of polyethylene separators in lithium-ion batteries after prolonged cycling.  KOREAN JOURNAL OF CHEMICAL ENGINEERING.  40,  3
  • (2023)  Two-in-one separator capturing and reutilizing polysulfides for high performance lithium-sulfur batteries.  CHEMICAL ENGINEERING JOURNAL.  460,  141620
  • (2023)  Naked metallic skin for homo-epitaxial deposition in lithium metal batteries.  NATURE COMMUNICATIONS.  14,  14
  • (2023)  Bi-Morphological Form of SiO2 on a Separator for Modulating Li-Ion Solvation and Self-Scavenging of Li Dendrites in Li Metal Batteries.  ACS APPLIED MATERIALS & INTERFACES.  15,  5
  • (2022)  Hierarchically Porous Ferroelectric Layer with the Aligned Dipole Moment for a High-Performance Aqueous Zn Metal Battery.  ACS APPLIED MATERIALS & INTERFACES.  43,  14
  • (2022)  Track-etched polyimide separator decorated with polyvinylpyrrolidone for self-assembling a robust protective layer on lithium-metal anode.  BIOCHEMICAL ENGINEERING JOURNAL.  1,  445
  • (2022)  Interface Design Considering Intrinsic Properties of Dielectric Materials to Minimize Space-Charge Layer Effect between Oxide Cathode and Sulfide Solid Electrolyte in All-Solid-State Batteries.  ADVANCED ENERGY MATERIALS.  12,  37
  • (2022)  Corrosion as the origin of limited lifetime of vanadium oxide-based aqueous zinc ion batteries.  NATURE COMMUNICATIONS.  1,  13