Proceedings of the 10th Asian Conference on Solid State Ionics: Advanced Materials for Emerging Technologies : Kandy, Sri Lanka, 12-16 June 2006World Scientific, 2006 - 898 pagina's The field of solid state ionics deals with ionically conducting materials in the solid state and numerous devices based on such materials. Solid state ionic materials cover a wide spectrum, ranging from inorganic crystalline and polycrystalline solids, ceramics, glasses, polymers, composites and nano-scale materials. A large number of Scientists in Asia are engaged in research in solid state ionic materials and devices and since 1988. The Asian Society for solid state ionics has played a key role in organizing a series of bi-ennial conferences on solid state ionics in different Asian countries. The contributions in this volume were presented at the 10th conference in the series organized by the Postgraduate Institute of Science (PGIS) and the Faculty of Science, University of Peradeniya, Sri Lanka, which coincided with the 10th Anniversary of the Postgraduate Institute of Science (PGIS). The topics cover solid state ionic materials as well as such devices as solid state batteries, fuel cells, sensors, and electrochromic devices. The aspects covered include theoretical studies and modeling, experimental techniques, materials synthesis and characterization, device fabrication and characterization. |
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Proceedings of the 10th Asian Conference on Solid State Ionics: Advanced ... B. V. R. Chowdari Gedeeltelijke weergave - 2006 |
Veelvoorkomende woorden en zinsdelen
ac impedance acid activation energy analysis anion annealed anode atoms batteries cathode cathode materials cations ceramic charge Chem chemical cm¹ cm²¹ complex composite concentration conducting polymer conductors crystalline cycle decreases density dielectric diffusion discharge capacity dopant doped electrical conductivity electrochemical electrode electrolyte system Figure filler frequency fuel cells gel electrolytes glass transition temperature grain graphite impedance increase interaction intercalation interface ionic conductivity layer LiCoO2 LiFePO4 LiNiO2 lithium ion mAh/g measurements membrane method MnO2 nanobelts nanocomposite observed obtained oxide oxygen parameters particles peak perovskite phase Phys plot polymer electrolyte potential powder Power Sources precursor properties proton conductivity reaction redox room temperature salt samples sensors shown in Fig shows silver triflate sintering SOFC solid electrolyte Solid State Ionics solution solvent spectra structure substrate synthesis technique thermal thin film TiO2 values voltage X-ray diffraction xerogel XRD patterns zircon
