Battery Science and TechnologyThe electrochemical performances of LiTi2(PS4)3 (LTPS), TiS¬2 with a 75Li2S-25P2S5 glass-ceramic solid electrolyte (SE) are investigated. In spite of irreversibility of structural changes, LTPS exhibits a high first discharge capacity of 455 mAh g-1 with good cycling retention of 76% at the 25th cycle between 1.5-3.5 V at 0.12C at 30 oC. In sharp contrast, LTPS with a liquid electrolyte (LE) in a conventional cell loses half of its initial capacity after only 14 cycles. The much poorer performance of LTPS in the LE compared to that in the SE is believed to be associated with dissolution of LTPS into the LE. The results highlight the prospects of exploring electrode materials that are compatible with SEs for all...
Department of Energy Engineering (Battery Science and Technology)The growing environmental deteriora...
Department of Chemical EngineeringLithium-ion batteries (LIBs) are believed to be main energy storag...
학위논문 (석사)-- 서울대학교 대학원 공과대학 전기·정보공학부, 2017. 8. 이종호.The device degradation under gate-induced drain le...
Department of Energy Engineering(Battery Science and Technology)Bulk-type all-solid-state lithium-io...
Battery Science and TechnologyLithium ion batteries (LIBs) have been considered as one of the most p...
Department of Energy Engineering(Battery Science and Technology)In the face of growing clean energy ...
Department of Energy EngineeringLithium ion batteries (LIBs) have conquered the energy storage devic...
Department of Energy Engineering(BatteryScienceandTechnology)Unstable oil prices and the effects of ...
Department of Energy Engineering(Battery Science and Technology)The Ni-based cathode materials have ...
Department of Energy Engineering (Battery Science and Technology)I reported that highly stable LiNi0...
Battery Science and TechnologyRecently, remarkable improvements in the electrochemical performance o...
Department of Energy Engineering(Battery Science and Technology)The effects of depositing ultrathin ...
Department of Energy Engineering (Battery Science and Technology)Lithium-ion batteries (LIBs) have b...
Department of Energy Engineering (Battery Science and Technology)Li ion batteries (LIB) are currentl...
Battery Science & TechnologyAs high rate charge and discharge characteristics of energy storage devi...
Department of Energy Engineering (Battery Science and Technology)The growing environmental deteriora...
Department of Chemical EngineeringLithium-ion batteries (LIBs) are believed to be main energy storag...
학위논문 (석사)-- 서울대학교 대학원 공과대학 전기·정보공학부, 2017. 8. 이종호.The device degradation under gate-induced drain le...
Department of Energy Engineering(Battery Science and Technology)Bulk-type all-solid-state lithium-io...
Battery Science and TechnologyLithium ion batteries (LIBs) have been considered as one of the most p...
Department of Energy Engineering(Battery Science and Technology)In the face of growing clean energy ...
Department of Energy EngineeringLithium ion batteries (LIBs) have conquered the energy storage devic...
Department of Energy Engineering(BatteryScienceandTechnology)Unstable oil prices and the effects of ...
Department of Energy Engineering(Battery Science and Technology)The Ni-based cathode materials have ...
Department of Energy Engineering (Battery Science and Technology)I reported that highly stable LiNi0...
Battery Science and TechnologyRecently, remarkable improvements in the electrochemical performance o...
Department of Energy Engineering(Battery Science and Technology)The effects of depositing ultrathin ...
Department of Energy Engineering (Battery Science and Technology)Lithium-ion batteries (LIBs) have b...
Department of Energy Engineering (Battery Science and Technology)Li ion batteries (LIB) are currentl...
Battery Science & TechnologyAs high rate charge and discharge characteristics of energy storage devi...
Department of Energy Engineering (Battery Science and Technology)The growing environmental deteriora...
Department of Chemical EngineeringLithium-ion batteries (LIBs) are believed to be main energy storag...
학위논문 (석사)-- 서울대학교 대학원 공과대학 전기·정보공학부, 2017. 8. 이종호.The device degradation under gate-induced drain le...