연구자 검색
POSTECH
학력
- 2011.03 ~ 2015.02 서울대학교 (박사-이차전지소재)
- 2009.02 ~ 2011.02 한국과학기술원 (석사-신소재공학)
- 2005.09 ~ 2009.01 한국과학기술원 (학사-신소재공학)
주요경력
- 2020.03 ~ 2024.06 고려대학교
- 2018.07 ~ 2024.06 KIST 에너지소재연구센터
- 2016.05 ~ 2018.06 STANFORD UNIVERSITY MATERIAL SCI & ENG
- 2015.03 ~ 2016.04 서울대학교 신소재공동연구소
학술지
국제전문학술지
- SolutionBased Deep Prelithiation for LithiumIon Capacitors with High Energy Density, SMALL, , 20, - (2024 )
- Fast discharging mitigates cathodeelectrolyte interface degradation of LiNi06Mn02Co02O2 in rechargeable lithium batteries, Energy Storage Materials, , 65, - (2024 )
- Thermodynamically controlled chemical regeneration of spent battery cathodes using recyclable electron donors under ambient conditions, Energy Environmental Science, , 17, 4064-4077 (2024 )
- Activation of Oxygen Redox by Inhibited Dynamic Phase Transition for HighEnergy LiRich Layered Oxide Cathode, Chemical Engineering Journal, , 495, - (2024 )
- Unlocking the Full Redox Capability of Organic Charge‐Transfer Complex in High‐Loading Electrodes for Organic Rechargeable Batteries, Advanced Energy Materials, , , - (2024 )
- Decoupling capacity fade and voltage decay of Lirich Mnrich cathodes by tailoring surface reconstruction pathways, Energy Environmental Science, , 17, 9623-9634 (2024 )
- Effect of the simultaneous addition of lanthanum and nickel on the oxidation behavior and related areaspecific resistance of ferritic stainless steels for solid oxide fuel cell interconnects, Corrosion Science, , 233, 112098- (2024 )
- Identification of a Ternary Nitride Ti10Cu3N4 with a Unique Structure Type, ACS Omega, , 9, 31035-31042 (2024 )
- Reversible Magnesium Metal Cycling in AdditiveFree Simple Salt Electrolytes Enabled by Spontaneous Chemical Activation, ACS Nano, , 17, 8980-8991 (2023 )
- Optimizing strengthcorrosion properties in sulfuric acid environment via tailoring V–Cr composition in mediumentropy VCrCoNi alloys, Corrosion Science, , 223, - (2023 )
- Occurrence of anionic redox with absence of full oxidation to Ru5 in highenergy P2type layered oxide cathode, Journal of Energy Chemistry, , 84, 153-161 (2023 )
- Stimulating CuZn alloying for compact Zn metal growth towards high energy aqueous batteries and hybrid supercapacitors, Energy Environmental Science, , 15, 2889-2899 (2022 )
- Regulating Dynamic Electrochemical Interface of LiNisub05subMnsub15subOsub4sub Spinel Cathode for Realizing Simultaneous Mn and Ni Redox in Rechargeable Lithium Batteries, ADVANCED ENERGY MATERIALS, , 12, - (2022 )
- Highenergy P2type Nalayered oxide cathode with sequentially occurred anionic redox and suppressed phase transition, Applied Physics Reviews, , 9, - (2022 )
- Li‐Rich Mn–Mg Layered Oxide as a Novel Ni‐Co‐Free Cathode, Advanced Functional Materials, , 32, - (2022 )
- Exceptionally increased reversible capacity of O3type NaCrO2 cathode by preventing irreversible phase transition, Energy Storage Materials, , 46, 289-299 (2022 )
- Unlocking the hidden chemical space in cubicphase garnet solid electrolyte for efficient quasiallsolidstate lithium batteries, Nature Communications, , 13, - (2022 )
- Bisub2subOsub3subBiOsub2sub Nanoheterojunction for Highly Efficient Electrocatalytic COsub2sub Reduction to Formate, Nano Letters, , 22, 1656-1664 (2022 )
- Weakly Solvating Solution Enables Chemical Prelithiation of GraphiteSiOisubxsubi Anodes for HighEnergy LiIon Batteries, Journal of the American Chemical Society, , 143, 9169-9176 (2021 )
- Selective Anionic Redox and Suppressed Structural Disordering Enabling High‐Energy and Long‐Life Li‐Rich Layered‐Oxide Cathode, Advanced Energy Materials, , 11, - (2021 )
- Molecularly Tailored LithiumArene Complex Enables Chemical Prelithiation of HighCapacity LithiumIon Battery Anodes, Angewandte Chemie International Edition, , 59, 14473-14480 (2020 )
- Multielectron redox phenazine for readytocharge organic batteries, Green Chemistry, , 19, 2980-2985 (2017 )
- Highperformance sodiumorganic battery by realizing foursodium storage in disodium rhodizonate, Nature Energy, , 2, - (2017 )
- Rational design of redox mediators for advanced LiOsub2sub batteries, Nature Energy, , 1, - (2016 )
- High Energy Organic Cathode for Sodium Rechargeable Batteries, Chemistry of Materials, , 27, 7258-7264 (2015 )
- Biologically inspired pteridine redox centres for rechargeable batteries, Nature Communications, , 5, - (2014 )
- Organic Nanohybrids for Fast and Sustainable Energy Storage, Advanced Materials, , 26, 2558-2565 (2014 )
- Redox Cofactor from Biological Energy Transduction as Molecularly Tunable EnergyStorage Compound, Angewandte Chemie International Edition, , 52, 8322-8328 (2013 )
- Critical Role of Oxygen Evolved from Layered LiExcess Metal Oxides in Lithium Rechargeable Batteries, Chemistry of Materials, , 24, 2692-2697 (2012 )
IP
- 이민아,권민형,황의찬,홍지현, 보호막이 적용된 금속 집전체를 활용한 고밀도 아연 전극, 이의 제조 방법 및 이를 포함하는 수계 아연전지, 한국, 10-2024-0188474 (IP24)
학회발표
- Elucidating and Tailoring Surface Reconstruction Pathways of Mnrich Oxide Cathodes, , 0, 0, - (2024)
- Insitu Stabilized Spinel Phase of LiMnrich Layered Oxides in ECfree Electrolyte Enabling Long Cycle Life, , 0, 0, - (2024)
- Elucidating and Tailoring Surface Reconstruction Pathways of Mnrich Oxide Cathodes
, , 0, 0, - (2024)
- Destabilized LayeredtoRocksalt Surface Reconstruction Enabling Extended Cycle Life for Li and Mnrich Layered Oxides, , 0, 0, - (2024)
- Reductive oxygen loss and rocksalt phase formation at cathodeelectrolyte interface of NCM cathodes below a certain potential, , 0, 0, - (2024)
- Destabilized LayeredtoRocksalt Surface Reconstruction Enabling Extended Cycle Life for Li and Mnrich Layered Oxides, , 0, 0, - (2024)
연구실적
- 홍지현 신규부임교수 초기정착비(1차)/대학, 포항공과대학교 (2024-2025)
- [4.29950_기술개발](양극재) 미드니켈 단입자의 출력 개선 방안 연구, 포항공대산학협력단 (2025-2025)
- (양극재) 미드니켈 단입자의 출력 개선 방안 연구, 포스코홀딩스(주) (2025-2025)