Titre de l'écran-titre (visionné le 3 juillet 2008).
CONTENTS NOTE
Text of Note
Cover --;Contents --;CH 1 Introduction --;CH 2 Recent progress in batteries and future problems --;2.1 Recent technologies of secondary batteries in Sony Corporation --;2.1.1 Introduction --;2.1.2 Lithium ion secondary battery --;2.1.3 Lithium polymer battery --;2.1.4 Future of LIB and LPB --;2.2 Recent technologies on materials for advanced lithium rechargeable batteries [Panasonic] --;2.2.1 Introduction --;2.2.2 Active materials for positive electrodes --;2.2.3 Active materials for negative electrodes --;2.2.4 Electrolytes --;2.2.5 Concluding remarks --;2.3 Development of secondary battery electrode materials toward high energy and power density [Sanyo] --;2.3.1 Requirements for high performance of the batteries from evolving functions of themobile devices --;2.3.2 Approach to high power density of nickel-metal hydride batteries --;2.3.3 Approach to high energy density of lithium secondary batteries --;2.3.4 Conclusions --;CH 3 Recent development of amorphous solid electrolytes and their application to solid-state batteries --;3.1 Introduction --;3.2 Lithium ion conductors --;3.2.1 Solid electrolytes --;3.2.2 Electrode materials --;3.2.3 All-solid-state lithium secondary batteries --;3.2.4 Thin film batteries --;3.3 Proton conductors --;3.3.1 Sol-gel ionics --;3.3.2 Proton-conducting composite materials --;3.3.3 Proton-conducting hybrid materials --;3.4 Conclusions --;CH 4 Recent development of electrode materials in lithium ion batteries --;4.1 Candidate cathode material with high voltage for lithium ion batteries: Structural study of 5V class LiNi0.5Mn1.5O4 and LiN --;4.1.1 Introduction --;4.1.2 Crystal structure of spinel type phase --;4.1.3 Electrochemical properties of LiNi[Sub(0.5)]Mn[Sub(1.5)]O[Sub(4)] and LiNi[Sub(0.5)]Mn[Sub(1.5)]O[Sub(4- )] --;4.1.4 Coulombic potential calculation of disfusion path for ordered (P4[Sub(3)]32) and disordered (Fd 3m) spinels --;4.1.5 Conclusions --;4.2 Electrode/electrolyte interfaces in all-solid-state lithium ion batteries --;4.2.1 Introduction --;4.2.2 Control and charge transfer process at electrode/electrolyte interface --;4.2.3 Characterization of electrode/solid electrolyte interface in solid-state batteries --;CH 5 Construction of solid/solid interface between hydrogen storage alloy electrode and solid electrolyte for battery application. --;5.1 Introduction --;5.2 Hydrogen storage alloy electrode/polymer hydrogel electrolyte interface --;5.2.1 Preparation and characterization of polymer hydrogel electrolyte --;5.2.2 Application of polymer hydrogel electrolyte to nickel-metal hydride batteries --;5.2.3 Application of polymer hydrogel electrolyte to electric double-layer capacitors --;5.2.4 Preparation and characterization of proton-conducting polymeric gel electrolytes --;5.3 Construction of hydrogen storage alloy electrode/inorganic solid electrolyte interface --;5.3.1 Preparation.