Electrochemical Behavior of Graphite-Lithium Intercalation Electrode in AlCl_3-EMIC-LiCl-SOCl_2 Room-Temperature Molten Salt
スポンサーリンク
概要
- 論文の詳細を見る
- 2001-12-05
著者
-
IDEMOTO Yasushi
Faculty of Science & Technology, Tokyo University of Science
-
KOURA Nobuyuki
Faculty of Science & Technology, Tokyo University of Science
-
Idemoto Yasushi
Faculty Of Science And Technology Tokyo University Of Science
-
Matsumoto Futoshi
Department Of Applied Chemistry Tokyo Metropolitan University
-
Matsumoto Futoshi
Faculty Of Science And Technology Tokyo University Of Science
-
Koura Nobuyuki
Faculty Of Science And Technology Tokyo University Of Science
-
ETOH Keiko
Faculty of Science and Technology, Tokyo University of Science
-
Etoh Keiko
Faculty Of Science And Technology Tokyo University Of Science
関連論文
- 分散めっき法により作製したAg-TiO2(anatase)粒子分散膜の光触媒活性
- Electrochemical Energy Generation and Storage : Fuel Cells and Lithium-Ion Batteries
- Surface-enhanced Raman Scattering on Ordered Gold Nanodot Arrays Prepared from Anodic Porous Alumina Mask
- チオフェノ-ル修飾金電極による水溶液中でのス-パ-オキシドイオンの電解生成〔英文〕 (バイオエレクトロケミストリ-の新展開)
- Electrochemical Behavior of Graphite-Lithium Intercalation Electrode in AlCl_3-EMIC-LiCl-SOCl_2 Room-Temperature Molten Salt
- Electrodeposition of Nb-Sn Alloy from SnCl2-NbCl5-EMIC Ambient Temperature Molten Salts (特集 New Trends in Molten Salt Chemistry and Electrochemistry)
- 水溶液中におけるポリアニリン修飾電極を用いたスーパーオキシドイオンの電解生成
- Li二次電池用正極材料LiMn2-xMg04の熱力学的安定性と正極特性
- Activation of a Li-rich Solid-Solution Layered Li[Ni_Li_Co_Mn_]O_2 Cathode and Retention of High Capacities via an Electrochemical Pretreatment with a Low Discharge Voltage Limit
- Fabrication of the Electrode for Capacitor Cell Prepared by the Electrophoretic Deposition Method
- アルカリ性溶液中におけるPtPb, PtBi及びPtBi金属間化合物のエタノール,メタノール電極触媒酸化活性
- Relationship between Electrochemical Pre-Treatment and Cycle Performance of a Li-Rich Solid-Solution Layered Li1−α[Ni0.18Li0.20+αCo0.03Mn0.58]O2 Cathode for Li-Ion Secondary Batteries
- 真空還元熱処理による0.5LiMnO-0.5LiMn[x]Ni[x]Co(1-2x)O (x = 1/3, 5/12)の結晶・電子構造