2017


09/04
Achievements
「リチウム空気電池のエネルギー効率と寿命を大幅に改善する電解液を開発」Highly Efficient Br/NO3 Dual-Anion Electrolyte for Suppressing Charging Instabilities of Li–O2 Batteries
09/04
Achievements
「超イオン導電特性を示す安価かつ汎用的な固体電解質材料を発見」Superionic Conductors: Li10+δ[SnySi1–y]1+δP2−δS12 with a Li10GeP2S12-type Structure in the Li3PS4–Li4SnS4–Li4SiS4 Quasi-ternary System
09/04
Achievements
「高イオン伝導度を示すガラス固体電解質の非結晶状態を解明」Direct observation of a non-crystalline state of Li2S–P2S5 solid electrolytes
09/04
Achievements
「高容量および長寿命を兼ね備えたリチウム-硫黄二次電池用正極の開発に成功」Li2S-Based Solid Solutions as Positive Electrodes with Full Utilization and Superlong Cycle Life in All-Solid-State Li/S Batteries
09/04
Achievements
「カーボンナノチューブ空気極により超高容量なリチウム空気電池を開発」Development of Ultra-High Capacity Lithium-Air Batteries Using CNT Sheet Air Electrodes
02/13
Achievements
「リチウムイオン蓄電池の高容量化実現につながる正極材料の発見」Findings the new positive electorodes material for lithium-ion batteries

2016


08/10
Achievements
「次世代リチウム電池電解液中のリチウムイオンの構造を世界で初めて解明」Successfully characterized the structure of lithium ion in the next-generation lithium battery electrolyte