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ABOUT SAINT

Professors

  • Professor Materials and electrode/cell design for rechargeable batteries
  • KIM, YOUNG JUN
    Lab ENEM

Research Interest

Materials and electrode design for rechargeable batteries

Education

  • Ph.D : Seoul National University, 1999

Experience

  • Post Doc. Researcher at Kyushu University (1999~2001)
  • Manager (Project leader), Samsung SDI Battery Division (2001~2005)
  • Senior Manager, Hyundai Motor Company, Fuel Cell Development Team (2006~2006)
  • Director, Advanced Batteries Research Center, Korea Electronics Technology Institute (2006~2016)

Journal Articles

  • (2025)  Unlocking high-power capability in graphite/Si-C blended anodes through optimal Si-C content.  CHEMICAL ENGINEERING JOURNAL.  526, 
  • (2025)  Interfacial control through fluorinated co-solvent electrolytes for enabling uniform Li metal plating and long-term stability in high-voltage lithium metal batteries.  NANO ENERGY.  145, 
  • (2025)  The dual role of zirconium in single-crystal Ni-rich cathodes as a promoter for grain growth and a pillar for structural stability for high-voltage lithium-ion batteries.  ENERGY STORAGE MATERIALS.  83, 
  • (2025)  Dual-Functional Li2B4O7 Coating on Carbon Fibers for Enhanced Li+ Transport and Stability in Sulfide All-Solid-State Batteries.  ADVANCED FUNCTIONAL MATERIALS.  1,  1
  • (2025)  Dry-processed ultra-high-energy cathodes (99.6wt%, 4.0 g cm−3) using single-crystalline Ni-rich oxides.  ENERGY STORAGE MATERIALS.  78, 
  • (2025)  Advanced Li-Ion Conducting pathways in Polymer-in-Filler composite solid electrolytes Utilizing Pre-Percolated bimetallic UiO-66 networks.  CHEMICAL ENGINEERING JOURNAL.  507, 
  • (2025)  Synergistic Application of Lithium Compensation and Graphene Technologies for High-Energy-Density Lithium-Ion Batteries.  INTERNATIONAL JOURNAL OF ENERGY RESEARCH.  2025,  1
  • (2024)  Accelerating ionic–electronic percolation pathways via catecholate coordination of bioinspired-polymer dopamine in all-solid-state composite cathode.  CHEMICAL ENGINEERING JOURNAL.  497, 
  • (2024)  Enhancing micro-scale SiOx anode durability: Electro-mechanical strengthening of binder networks via anchoring carbon nanotubes with carboxymethyl cellulose.  JOURNAL OF ENERGY CHEMISTRY.  101,  1
  • (2024)  Unraveling the Deposition and Dissolution Behavior of the Ag-Modified Li Surface Based on Electrochemical Atomic Force Microscopy.  ACS APPLIED MATERIALS & INTERFACES.  16,  36
  • (2024)  Kelvin Probe Force Microscopy and Electrochemical Atomic Force Microscopy Investigations of Lithium Nucleation and Growth: Influence of the Electrode Surface Potential.  JOURNAL OF PHYSICAL CHEMISTRY LETTERS.  15,  28
  • (2024)  Stable immobilization of lithium polysulfides using three-dimensional ordered mesoporous Mn­2O3 as host material in lithium–sulfur batteries.  CARBON ENERGY.  6,  6
  • (2024)  Dry-film technology employing cryo-pulverized polytetrafluoroethylene binder for all-solid-state batteries.  CHEMICAL ENGINEERING JOURNAL.  487,  1
  • (2024)  Stable lithium metal anode enabled by a polymeric interlayer with high salt concentration for solid-state batteries.  JOURNAL OF ENERGY STORAGE.  84, 
  • (2024)  Reinforcement of Positive Electrode-Electrolyte Interface without Using Electrolyte Additives Through Thermoelectrochemical Oxidation of LiPF6 for Lithium Secondary Batteries.  SMALL.  20,  10
  • (2023)  Astonishing performance improvements of dry-film graphite anode for reliable lithium-ion batteries.  CHEMICAL ENGINEERING JOURNAL.  476,  1
  • (2023)  Dual-Supporter and Dual-Salt Strategy for Solid Polymer Electrolyte with High Ionic Conductivity and Elastic Toughness.  ADVANCED ELECTRONIC MATERIALS.  9,  8
  • (2023)  LiTFSI salt concentration effect to digest lithium polysulfides for high-loading sulfur electrodes.  JOURNAL OF ENERGY CHEMISTRY.  78,  1
  • (2022)  Design of densified nickel-rich layered composite cathode via the dry-film process for sulfide-based solid-state batteries.  JOURNAL OF MATERIALS CHEMISTRY A.  10,  43
  • (2022)  Microstructure engineering of nickel-rich oxide/carbon composite cathodes for fast charging of lithium-ion batteries.  CERAMICS INTERNATIONAL.  48,  21

Patent/Intellectual Property

  • POSITIVE ACTIVE MATERIAL FOR LITHIUM SECONDARY BATTERY AND METHOD OF PREPARING SAME.  14/375140.  20171121.  UNITED STATES
  • PRECURSOR OF CATHODE ACTIVE MATERAL FOR ALITHIUM SECONDARY BATTERY, METHOD FOR MANUFACTURING THE PRECURSOR, CATHODE ACTIVE MATERIAL AND LITHIUM SECONDARY BATTERY INCLUDING THE CATHODE ACTIVE MATERAL.  14/347193.  20170328.  UNITED STATES

Honors / Awards

  • Outstanding Research Achievement Award, Ministry of Science, ICT and Future Planning(2016)

Conference Paper

  • (2021)  Natural Activation of CuO to CuCl2 as a Cathode Material for Dual-Ion Lithium Metal Batteries.  72nd Annual Meeting of the International Society of Electrochemistry.  KOREA, REPUBLIC OF
  • (2018)  Capacity enhancement by adding graphene into Cu2O cathode of Li-SO2 battery.  한국전기화학회 2018년도 추계총회 및 학술발표회.  KOREA, REPUBLIC OF
  • (2018)  Study on conversion reaction of CuS for Lithium rechargeable batteries.  한국전기화학회 2018년도 추계총회 및 학술발표회.  KOREA, REPUBLIC OF
  • (2018)  급속 충 방전시 LiNi0.6Co0.2Mn0.2O2의 전기 화학적 성능에 대한 전도성 물질로서 CNT 효과 연구.  2018년도 한국전기화학회 추계총회 및 학술발표회.  KOREA, REPUBLIC OF
  • (2018)  전환반응을 이용한 차세대이차전지 전극소재(Electrode materials for next generation batteries through conversion reaction).  2018 한국공업화학회 추계 총회 및 학술대회.  KOREA, REPUBLIC OF