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교수소개

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교수소개

교수소개 - 미래에너지공학과

  • 교수 2차전지소재
  • 김영준

관심분야

Nanomaterials for Rechargeable Batteries

학력

  • (PhD) 서울대학교 자원공학 (1994-1999)

약력/경력

  • 일본 큐슈대학교 박사 후 연구원 (1999-2001)
  • 삼성 SDI 전지본부 개발팀 과장 (2001-2005)
  • 현대자동차연구소 연료전지시스템개발팀 차장 (2006)
  • 전자부품연구원 차세대전지연구센터 센터장(책임연구원) (2006-2016)

학술지 논문

  • (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, 
  • (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
  • (2022)  Carbon nanotubes-coated Ni-rich cathodes for the green manufacturing process of lithium-ion batteries.  INTERNATIONAL JOURNAL OF ENERGY RESEARCH.  46,  11
  • (2022)  Self-adaptive anode design with graphene-coated SiOx/graphite for high-energy Li-ion batteries.  CHEMICAL ENGINEERING JOURNAL.  442, 
  • (2022)  Densification and charge transport characterization of composite cathodes with single-crystalline LiNi0.8Co0.15Al0.05O2 for solid-state batteries.  ENERGY STORAGE MATERIALS.  46, 
  • (2021)  Controlling a lithium surface with an alkyl halide nucleophile exchange.  JOURNAL OF ENERGY CHEMISTRY.  62,  -
  • (2021)  Graphene collage on Ni-rich layered oxide cathodes for advanced lithium-ion batteries.  NATURE COMMUNICATIONS.  12,  1
  • (2021)  Self-Formulated Na-Based Dual-Ion Battery Using Nonflammable SO2-Based Inorganic Liquid Electrolyte.  SMALL.  17,  9
  • (2020)  Comparative study of thermal runaway and cell failure of lab-scale Li-ion batteries using accelerating rate calorimetry.  JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY.  83,  1
  • (2019)  Reversible dual-ion battery via mesoporous Cu2O cathode in SO2-in-salt non-flammable electrolyte.  NANO ENERGY.  66,  104138
  • (2019)  Thermal and chemical characterization of the solid-electrolyte interphase in Li-ion batteries using a novel separator sampling method.  JOURNAL OF POWER SOURCES.  440,  1
  • (2019)  New insights into the phase evolution in CuS during lithiation and delithiation processes.  JOURNAL OF MATERIALS CHEMISTRY A.  7,  19
  • (2018)  Junction Welding Techniques for Metal Nanowire Network Electrodes.  MACROMOLECULAR RESEARCH.  26,  12
  • (2018)  Facile Mn Surface Doping of Ni-Rich Layered Cathode Materials for Lithium Ion Batteries.  ACS APPLIED MATERIALS & INTERFACES.  10,  45

특허/프로그램

  • POSITIVE ACTIVE MATERIAL FOR LITHIUM SECONDARY BATTERY AND METHOD OF PREPARING SAME.  14/375140.  20171121.  미국
  • 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.  미국

수상/공훈

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

학술회의논문

  • (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.  대한민국
  • (2018)  Capacity enhancement by adding graphene into Cu2O cathode of Li-SO2 battery.  한국전기화학회 2018년도 추계총회 및 학술발표회.  대한민국
  • (2018)  Study on conversion reaction of CuS for Lithium rechargeable batteries.  한국전기화학회 2018년도 추계총회 및 학술발표회.  대한민국
  • (2018)  급속 충 방전시 LiNi0.6Co0.2Mn0.2O2의 전기 화학적 성능에 대한 전도성 물질로서 CNT 효과 연구.  2018년도 한국전기화학회 추계총회 및 학술발표회.  대한민국
  • (2018)  전환반응을 이용한 차세대이차전지 전극소재(Electrode materials for next generation batteries through conversion reaction).  2018 한국공업화학회 추계 총회 및 학술대회.  대한민국