1 - 1 |
The 40th Symposium on Solid State Ionics in Japan Preface Mizusaki J, Maruyama T, Yamaguchi S |
2 - 5 |
Chemical synthesis of Li3PS4 precursor suspension by liquid-phase shaking Phuc NHH, Morikawa K, Totani M, Muto H, Matsuda A |
6 - 12 |
Preparation of Li7La3(Zr2-x,Nb-x)O-12 (x=0-1.5) and Li3BO3/LiBO2 composites at low temperatures using a sol-gel process Rosero-Navarro NC, Yamashita T, Miura A, Higuchi M, Tadanaga K |
13 - 18 |
Li+ conduction in Li-Nb-O films deposited by a sol-gel method Niinomi H, Motoyama M, Iriyama Y |
19 - 28 |
Synthesis, structure and ionic conductivities of novel Li-ion conductor A(3)Li(x)Ta(6-x)Zr(x)Si(4)O(26) (A = Sr and Ba) Aimi A, Inaguma Y, Kubota M, Mori D, Katsumata T, Ikeda M, Ohno T |
29 - 32 |
Crystal structure and solid state ionic conductivity of molecular crystal composed of lithium bis(trifluoromethanesulfonyl)amide and 1,2-dimethoxybenzene in a 1:1 molar ratio Moriya M, Kato D, Hayakawa Y, Sakamoto W, Yogo T |
33 - 37 |
Lithium ion conduction in doped LaLiO2 system Iqbal M, Suzuki K, Kobayashi G, Zhao GW, Hirayama M, Kanno R |
38 - 40 |
The electrical conductivity of the oxynitride Li-2.3 (O0.7N0.3) obtained from the high-temperature oxidation of Li3N Guo YQ, Kikkawa S |
41 - 46 |
Local structure and composition change at surface of lithium-ion conducting solid electrolyte Yamada H, Takemoto K |
47 - 50 |
Enhancement of the lithium-ion conductivity of LiBH4 by hydration Takano A, Oikawa I, Kamegawa A, Takamura H |
51 - 58 |
NMR studies on lithium ion migration in sulfide-based conductors, amorphous and crystalline Li3PS4 Hayamizu K, Aihara Y, Watanabe T, Yamada T, Ito S, Machida N |
59 - 65 |
Theoretical insight into charging process in a Li3PO4 (100)/LiFePO4 (010) coherent interface system Sumita M, Tanaka Y, Ikeda M, Ohno T |
66 - 74 |
XRD and XAFS study on structure and cation valence state of layered ruthenium oxide electrodes, Li2RuO3 and Li2Mn0.4Ru0.6O3, upon electrochemical cycling Mori D, Kobayashi H, Okumura T, Nitani H, Ogawa M, Inaguma Y |
75 - 78 |
Electromotive force measurements of LiCoO2 electrode on a lithium ion-conducting glass ceramics under mechanical stress Funayama K, Nakamura T, Kuwata N, Kawamura J, Kawada T, Amezawa K |
79 - 82 |
5 V class LiNi0.5Mn1.5O4 positive electrode coated with Li3PO4 thin film for all-solid-state batteries using sulfide solid electrolyte Yubuchi S, Ito Y, Matsuyama T, Hayashi A, Tatsumisago M |
83 - 90 |
Lithium intercalation into polyoxomolybdate (NH4)(6)[NiMo9O32] as the cathode material of lithium battery Ni EF, Uematsu S, Tsukada T, Sonoyama N |
91 - 95 |
Influences of high deposition rate on LiCoO2 epitaxial films prepared by pulsed laser deposition Nishio K, Ohnishi T, Osada M, Ohta N, Watanabe K, Takada K |
96 - 100 |
Complex hydride for composite negative electrode-applicable to bulk-type all-solid-state Li-ion battery with wide temperature operation Yoshida K, Suzuki S, Kawaji J, Unemoto A, Orimo S |
101 - 105 |
Reactions at the electrode/electrolyte interface of all-solid-state lithium batteries incorporating Li-M (M = Sn, Si) alloy electrodes and sulfide-based solid electrolytes Sakuma M, Suzuki K, Hirayama M, Kanno R |
106 - 111 |
Preparation of LiCoO2 thin film consisting of nanosize particles on carbon substrate with the rugged surface via electrodeposition Sonoyama N, Tanimura H, Mizuno T, Ogasawara Y, Quan Z |
112 - 117 |
Electrode morphology in all-solid-state lithium secondary batteries consisting of LiNi1/3Co1/3Mn1/3O2 and Li2S-P2S5 solid electrolytes Sakuda A, Takeuchi T, Kobayashi H |
118 - 121 |
Preparation and in-situ characterization of well-defined solid electrolyte/electrode interfaces in thin-film lithium batteries Haruta M, Shiraki S, Ohsawa T, Suzuki T, Kumatani A, Takagi Y, Shimizu R, Hitosugi T |
122 - 125 |
Fabrication of all-solid-state lithium secondary batteries with amorphous TiS4 positive electrodes and Li7La3Zr2O12 solid electrolytes Matsuyama T, Takano R, Tadanaga K, Hayashi A, Tatsumisago M |
126 - 135 |
Thermodynamic stability of sulfide electrolyte/oxide electrode interface in solid-state lithium batteries Yokokawa H |
136 - 142 |
Fabrication and electrochemical properties of a LiCoO2 and Li10GeP2S12 composite electrode for use in all-solid-state batteries Li WJ, Hirayama M, Suzuki K, Kanno R |
143 - 154 |
Na+ superionic conducting silicophosphate glass-ceramics - Review Okura T, Yoshida N, Yamashita K |
155 - 159 |
New phase transition in superprotonic phase of inorganic solid acid Cs-2(HSO4) (H2PO4) Takahashi H, Suzuki Y, Sakuma T |
160 - 164 |
Interfacial conduction mechanism of cesium hydrogen phosphate and silicon pyrophosphate composite electrolytes for intermediate-temperature fuel cells Kikuchi R, Ogawa A, Matsuoka T, Takagaki A, Sugawara T, Oyama ST |
165 - 169 |
Proton conduction through the nanochannel water in weak-acidic nanoporous crystals [Cu-2(phen)(2)(AcO)(2)(H2O)(2)][Al(OH)(6)Mo6O18]M+(nH(2)O) (M+ = H+, Li+, Na+, K+) Matsui H, Tadokoro M |
170 - 174 |
Protonic conduction in SmBO3 with high-temperature phase Kitamura N, Yamada J, Amezawa K, Hanada T, Idemoto Y |
175 - 179 |
Redox-induced proton insertion and desertion of zircon-type neodymium chromate(V) Aoki Y, Kuroda K, Tsuji E, Habazaki H |
180 - 186 |
Crystal structure and oxygen permeation properties of (La, Ba, Sr)(Co, Ta)O3-delta Kagomiya I, Shimono Y, Kakimoto K |
187 - 194 |
Dependence of thermal expansion of LaNi0.6Fe0.4O3 (- delta) and La0.6Sr0.4Co0.2Fe0.8O3 (-) (delta) on oxygen partial pressure Niwa E, Hashimoto T |
195 - 201 |
Theoretical study on temperature effect of electronic structure and spin state in LaCoO3 by using density functional theory Ishimoto T, Ito Y, Tada T, Oike R, Nakamura T, Amezawa K, Koyama M |
202 - 208 |
Rate-determining elementary step of oxygen reduction reaction at (La,Sr)CoO3-based cathode surface Miyoshi S, Takeshita A, Okada S, Yamaguchi S |
209 - 214 |
Role of oxygen vacancy in dissociation of oxygen molecule on SOFC cathode: Ab initio molecular dynamics simulation Sugiura S, Shibuta Y, Shimamura K, Misawa M, Shimojo F, Yamaguchi S |
215 - 221 |
Zirconium-peroxo embedded in non-stoichiometric yttria stabilized zirconia (110) from first-principles Takemoto S, Tada T |
222 - 226 |
Enhancement of anode activity at Ni/Sm-doped CeO2 cermet anodes by Mo addition in NH3-fueled solid oxide fuel cells Hashinokuchi M, Yokochi R, Akimoto W, Doi T, Inaba M, Kugai J |
227 - 233 |
Electrochemical and microstructural properties of Ni-(Y2O3)(0.08)(ZrO2)(0.92)-(Ce0.9Gd0.1)O-1.95 anode-supported microtubular solid oxide fuel cells Sumi H, Kennouche D, Yakal-Kremski K, Suzuki T, Barnett SA, Miller DJ, Yamaguchi T, Hamamoto K, Fujishiro Y |
234 - 238 |
Sensing characteristics of YSZ-based oxygen sensors attached with BaxSr1-xFeO3 sensing-electrode Iio A, Ikeda H, Anggraini SA, Miura N |