1 - 1 |
The 19th International Conference on Solid State Ionics (SSI-19) Preface Chair JM, Yamaguchi S, Eguchi K, Ishihara T, Tatsumisago M |
2 - 8 |
From Onsager to mixed ionic electronic conductors Lee T, Kim HS, Yoo HI |
9 - 13 |
The effect of electrode thickness on electrochemical performance of LiMn2O4 cathode synthesized by modified sol-gel method Hamankiewicz B, Michalska M, Krajewski M, Ziolkowska D, Lipinska L, Korona K, Kaminska M, Czervvinski A |
14 - 17 |
Synthesis, crystal structure, and electrochemical properties of hollandite-type KxTi1-yMnyO2 Kijima N, Sakao M, Tanuma Y, Kataoka K, Igarashi K, Akimoto J |
18 - 21 |
Negative electrode comprised of Fe3O4 nanoparticles and Cu nanowires for lithium ion batteries Ke FS, Jamison L, Huang L, Zhang B, Li JT, Zhou XD, Sun SG |
22 - 24 |
Influence of pyrolysis atmosphere on the lithium storage properties of carbon-rich polymer derived SiOC ceramic anodes Pradeep VS, Graczyk-Zajac M, Wilamowska M, Riedel R, Soraru GD |
25 - 29 |
Effect of carbon coating methods on structural characteristics and electrochemical properties of carbon-coated lithium iron phosphate Kim JK, Kim DS, Lim DH, Matic A, Chauhan GS, Ahn JH |
30 - 34 |
The synthesis, characterization and electrochemical properties of V3O7 center dot H2O/CNT Nanocomposite Li ZL, Sun HJ, Xu J, Zhu QY, Chen W, Zakharova GS |
35 - 38 |
Relaxation analysis of LiMnPO4-based olivine-type material Satou Y, Komine S, Park S, Yao T |
39 - 42 |
Effects of Li pre-doping on charge/discharge properties of Si thin flakes as a negative electrode for Li-ion batteries Okubo T, Saito M, Yodoya C, Kamei A, Hirota M, Takenaka T, Okumura T, Tasaka A, Inaba M |
43 - 48 |
The effects of Al2O3 coating on the performance of layered Li1.20Mn0.55Ni0.16Co0.09O2 materials for lithium-ion rechargeable battery Kobayashi H, Okumura T, Shikano M, Takada K, Arachi Y, Nitani H |
49 - 55 |
Experimental evaluation of LiFeTiO4 as an electrode Chakrabarti S, Thakur AK, Biswas K |
56 - 60 |
Effect of microstructure on discharge properties of polycrystalline LiCoO2 Yamakawa S, Yamasaki H, Koyama T, Asahi R |
61 - 65 |
Synthesis and performance of apple-like tin oxide as anode for Li-ion batteries Peng P, Wen ZY, Liu Y, Lu Y, Wu MF, Jin J, Liu C, Ma GQ |
66 - 69 |
Evaluation of the effective reaction zone in a composite cathode for lithium ion batteries Nakamura T, Watanabe T, Amezawa K, Tanida H, Ohara K, Uchimoto Y, Ogumi Z |
70 - 73 |
Numerical investigation of kinetic mechanism for runaway thermo-electrochemistry in lithium-ion cells Tanaka N, Bessler WG |
74 - 76 |
Electronic structure of spinel-type LiNi1/2Ge3/2O4 and LiNi1/2Mn3/2O4 as positive electrodes for rechargeable Li-ion batteries studied by first-principles density functional theory Nakayama M, Jalem R, Kasuga T |
77 - 82 |
Electrochemical characterization of poly(vinylidene fluoride-co-hexafluoro propylene) based electrospun gel polymer electrolytes incorporating moth temperature ionic liquids as green electrolytes for lithium batteries Raghavan P, Zhao X, Choi H, Lim DH, Kim JK, Matic A, Jacobsson P, Nah C, Ahn JH |
83 - 87 |
Structure and electrochemical performance of the spinel-LiMn2O4 synthesized by mechanical alloying Putra TYSP, Yonemura M, Torii S, Ishigaki T, Kamiyama T |
88 - 91 |
High-pressure synthesis of lithium-rich layered rock-salt Li-2(Mn3/8Co1/4Ni3/8)O3-x for lithium battery cathodes Matsuda Y, Suzuki K, Hirayama M, Kanno R |
92 - 97 |
Neutron diffraction studies on structural effect for Ni-doping in LiCo1-xNixO2 Adipranoto DS, Ishigaki T, Hoshikawa A, Iwase K, Yonemura M, Mori K, Kamiyama T, Morii Y, Hayashi M |
98 - 101 |
Stability of C/Li2MnSiO4 composite cathode material for Li-ion batteries towards LiPF6 based electrolyte Molenda M, Swietoslawski M, Wach A, Majda D, Kustrowski P, Dziembaj R |
102 - 105 |
Effects of V doping on the electrochemical performance of Li3MnO4 for lithium ion batteries Xie SJ, Yu ZY, Liu HX, Wu S |
106 - 109 |
Single-crystal growth, crystal structure analysis and physical properties of lithium overstoichiometric Li1+xCoO2 Kataoka K, Akimoto J |
110 - 114 |
Local structural change in Li2FeSiO4 polyanion cathode material during initial cycling Masese T, Orikasa Y, Mori T, Yamamoto K, Ina T, Minato T, Nakanishi K, Ohta T, Tassel C, Kobayashi Y, Kageyama H, Arai H, Ogumi Z, Uchimoto Y |
115 - 119 |
Structural changes and electrochemical properties of Li2Cu1-xMxO2 for lithium secondary batteries Setiawati E, Hayashi M, Tsuda M, Hayashi K, Kobayashi R |
120 - 123 |
Low temperature molten salt synthesis of anatase TiO2 and its electrochemical properties Reddy MV, Adams S, Liang GTJ, Mingze IF, An HVT, Chowdari BVR |
124 - 127 |
Structural and transport properties of Li1+xV1-xO2 anode materials for Li-ion batteries Geziorowski B, Kondracki L, Swierczek K, Molenda J |
128 - 132 |
Electrochemical properties of nano-sized binary metal oxides as anode electrode materials for lithium battery synthesized from layered double hydroxides Quan Z, Ni EF, Ogasawara Y, Sonoyama N |
133 - 137 |
Porous iron oxide coating on beta''-alumina ceramics for Na-based batteries Hu YY, Wen ZY, Wu XW |
138 - 142 |
Application of graphite-solid electrolyte composite anode in all-solid-state lithium secondary battery with Li2S positive electrode Takeuchi T, Kageyama H, Nakanishi K, Ohta T, Sakuda A, Sakai T, Kobayashi H, Sakaebe H, Tatsumi K, Ogumi Z |
143 - 146 |
Composite positive electrode based on amorphous titanium polysulfide for application in all-solid-state lithium secondary batteries Sakuda A, Taguchi N, Takeuchi T, Kobayashi H, Sakaebe H, Tatsumi K, Ogumi Z |
147 - 150 |
Preparation of composite electrode with Li2S-P2S5 glasses as active materials for all-solid-state lithium secondary batteries Hakari T, Nagao M, Hayashi A, Tatsumisago M |
151 - 154 |
Interface behavior between garnet-type lithium-conducting solid electrolyte and lithium, metal Sudo R, Nakata Y, Ishiguro K, Matsui M, Hirano A, Takeda Y, Yamamoto O, Imanishi N |
155 - 159 |
Phase transformation of the garnet structured lithium ion conductor: Li7La3Zr2O12 Matsui M, Sakamoto K, Takahashi K, Hirano A, Takeda Y, Yamamoto O, Imanishi N |
160 - 164 |
Aprotic Li-O-2 cells: Gas diffusion layer (GDL) as catalyst free cathode and tetraglyme/LiClO4 as electrolyte Zeng J, Nair JR, Francia C, Bodoardo S, Penazzi N |
165 - 169 |
Fabrication of thin-film lithium batteries with 5-V-class LiCoMnO4 cathodes Kuwata N, Kudo S, Matsuda Y, Kawamura J |
170 - 173 |
Mesoporous carbon/sulfur composite with polyaniline coating for lithium sulfur batteries Jin J, Wen ZY, Ma GQ, Lu Y, Rui K |
174 - 178 |
The enhanced performance of Li-S battery with P14YRTFSI-modified electrolyte Ma GQ, Wen ZY, Jin J, Wu MF, Zhang GX, Wu XW, Zhang JC |
179 - 182 |
Effects of intermediate layer on interfacial resistance for all-solid-state lithium batteries using lithium borohydride Takahashi K, Maekawa H, Takamura H |
183 - 187 |
High capacity all-solid-state Cu-Li2S/Li6PS5Br/In batteries Chen M, Rao RP, Adams S |
188 - 191 |
Preparation of hydroxide ion conductive KOH-ZrO2 electrolyte for all-solid state iron/air secondary battery Matsuda A, Sakamoto H, Kishimoto T, Hayashi K, Kugimiya T, Muto H |
192 - 196 |
Microspherical Na2Ti3O7 prepared by spray-drying method as anode material for sodium-ion battery Zou W, Li JW, Deng QJ, Xue J, Dai XY, Zhou AJ, Li JZ |
197 - 201 |
Free-standing Ni mesh with in-situ grown MnO2 nanoparticles as cathode for Li-air batteries Yu Y, Zhang B, Xu ZL, He YB, Kim JK |
202 - 205 |
Li-7 NMR study of milling effects on instability of lithium-sites in lithium substituted silver niobate Nakamura K, Michihiro Y, Moriyoshi C, Kuroiwa Y, Wada S |
206 - 210 |
Sodium intercalation in NaxCoO2-y - Correlation between crystal structure, oxygen nonstoichiometry and electrochemical properties Baster D, Dybko K, Szot M, Swierczek K, Molenda J |
211 - 215 |
Lithium conducting solid electrolyte Li1+xAlxGe2 (-) (x)(PO4)(3) membrane for aqueous lithium air battery Safanama D, Damiano D, Rao RP, Adams S |
216 - 219 |
Characterization of Prussian blue as positive electrode materials for sodium-ion batteries Minowa H, Yui Y, Ono Y, Hayashi M, Hayashi K, Kobayashi R, Takahashi KI |
220 - 225 |
Controllable synthesis of flowerlike alpha-MnO2 as electrode for pseudocapacitor application Rusi, Majid SR |
226 - 229 |
RGO-wrapped MnO2 composite electrode for supercapacitor application Chan PY, Rusi, Majid SR |
230 - 233 |
Evaluation of aluminium doped lanthanum ferrite based electrodes for supercapacitor design Rai A, Sharma AL, Thakur AK |
234 - 237 |
Synthesis and electrochemical properties of graphene/V2O5 xerogels nanocomposites as supercapacitor electrodes Xu J, Sun HJ, Li ZL, Lu S, Zhang XY, Jiang SS, Zhu QY, Zakharova GS |
238 - 240 |
Electrochemical oxygen separation using hydroxide ion conductive layered double hydroxides Arishige Y, Kubo D, Tadanaga K, Hayashi A, Tatsumisago M |
241 - 247 |
A numerical comparison of hydrogen absorption behaviors of uranium and zirconium cobalt-based metal hydride beds Yoo H, Kim W, Ju H |
248 - 252 |
Ceria-based substrates for CO2 separation membranes Patricio SG, Soares CMC, Santos CFN, Figueiredo FML, Marques FMB |
253 - 256 |
Isothermal catalytic oxidation of diesel soot on Yttria-stabilized Zirconia Obeid E, Tsampas MN, Jonet S, Boreave A, Burel L, Steil MC, Blanchard G, Pajot K, Vernoux P |
257 - 261 |
Investigation of the Electrochemical Promotion of Catalysis origins on electrochemical catalysts with oxygen ion conductive supports: Isotopic labeling mechanistic studies Tsampas MN, Sapountzi FM, Boreave A, Vernoux P |
262 - 265 |
The impact of sulfur contamination on the performance of La0.6Sr0.4Co0.2Fe0.8O3 (-) (delta) oxygen transport membranes Alqaheem Y, Thursfield A, Zhang GR, Metcalfe IS |
266 - 269 |
Sensing performance of zirconia-based gas sensor using titania sensing-electrode added with palladium Fujio Y, Sato T, Miura N |
270 - 273 |
Influence of the V2O5 content of the catalyst layer of a non-Nernstian NH3 sensor Schonauer-Kamin D, Fleischer M, Moos R |
274 - 278 |
CO2 and SO2 tolerant Fe-doped metal oxides for solid state gas sensors Mulmi S, Kannan R, Thangadurai V |
279 - 282 |
All-solid-state sensors used in drilling muds to prevent H2S gas evolution on oil wells Bohnke C, Lorant S, Gunes V, Botquelen JY, Breviere J |
283 - 287 |
NASICON-based acetone sensor using three-dimensional three-phase boundary and Cr-based spinel oxide sensing electrode Zhang H, Yin CG, Guan YZ, Cheng XY, Liang XS, Lu GY |
288 - 291 |
Detection of NO by pulsed polarization of Pt I YSZ Fischer S, Pohle R, Magori E, Fleischer M, Moos R |
292 - 297 |
High Performance Mixed-Potential Type NOx Sensor Based On Stabilized Zirconia and Oxide Electrode Lu GY, Diao Q, Yin CG, Yang SQ, Guan YZ, Cheng XY, Liang XS |
298 - 302 |
LaNb0.84W0.16O4.08 as a novel electrolyte for high temperature fuel cell and solid oxide electrolysis applications Laguna-Bercero MA, Bayliss RD, Skinner SJ |
303 - 306 |
Stability of LSCF electrode with GDC interlayer in YSZ-based solid oxide electrolysis cell Kim SJ, Choi GM |
307 - 312 |
Functionalized mesoporous materials as new class high temperature proton exchange membranes for fuel cells Jiang SP |
313 - 318 |
Design and investigation of dual-layer electrodes for proton exchange membrane fuel cells Zhao BT, Sun LL, Ran R, Shao ZP |
319 - 323 |
One-dimensional modeling and analysis for performance degradation of high temperature proton exchange membrane fuel cell using PA doped PBI membrane Kim M, Kang T, Kim J, Sohn YJ |
324 - 327 |
Meso-structured organosilicas as fillers for Nafion (R) membranes Rosero-Navarro NC, Domingues EM, Sousa N, Ferreira P, Figueiredo FML |
328 - 331 |
Theoretical study on oxidation reaction mechanism on Au catalyst in direct alkaline fuel cell Ishimoto T, Kazuno H, Kishida T, Koyama M |
332 - 336 |
Effects of type of graphite conductive filler on the performance of a composite bipolar plate for fuel cells Kang K, Park S, Ju H |
337 - 339 |
Anelastic properties of La0.6Sr0.4Co1 -yFeyO3-delta at high temperatures Kimura Y, Tolchard J, Einarsrud MA, Grande T, Arnezawa K, Fukuhara M, Hashimoto S, Kawada T |
340 - 344 |
Investigation on Pr-2 (-) xSrxNiO4 (+) (delta) (x=0.3-1.0) cathode materials for intermediate temperature solid oxide fuel cell Bhoga SS, Khandale AP, Pahune BS |
345 - 348 |
Ex-solution of Ni nanoparticles in a La0.2Sr0.8Ti1-xNixO3-delta alternative anode for solid oxide fuel cell Park BH, Choi GM |
349 - 353 |
Oxygen exchange, thermochemical expansion and cathodic behavior of perovskite-like Sr0.7Ce0.3MnO3-delta Kuritsyna I, Sinitsyn V, Melnikov A, Fedotov Y, Tsipis E, Viskup A, Bredikhin S, Kharton V |
354 - 358 |
Cation-ordered perovskite-type anode and cathode materials for solid oxide fuel cells Zheng K, Swierczek K, Bratek J, Klimkowicz A |
359 - 364 |
Electrochemical characterization of multi-element-doped ceria as potential anodes for SOFCs Handal HT, Thangadurai V |
365 - 369 |
The structural and electrical properties of Sr2Ni0.75Mg0.25MoO6 and its compatibility with solid state electrolytes Filonova EA, Dmitriev AS, Pikalov PS, Medvedev DA, Pikalova EY |
370 - 373 |
A theoretical model for the electrical conductivity of core-shell nano-composite electrode of SOFC Chen MN, Liu D, Lin ZJ |
374 - 377 |
Effects of transition metal addition on sintering and electrical conductivity of La-doped CeO2 as buffer layer for doped LaGaO3 electrolyte film Hong JE, Ida S, Ishihara T |
378 - 381 |
High surface reactivity of La/Sr-Co perovskite based cathode with cation nonstoichiometry Takeshita A, Miyoshi S, Yamaguchi S, Kudo T, Sato Y |
382 - 387 |
Cathode compatibility, operation, and stability of LaNbO4-based proton conducting fuel cells Magraso A, Fontaine ML, Bredesen R, Haugsrud R, Norby T |
388 - 391 |
Preparation of nano-structured cathode for protonic ceramic fuel cell by bead-milling method Oda H, Yoneda T, Sakai T, Okuyama Y, Matsumoto H |
392 - 397 |
Oxygen isotope labeling method and oxygen reduction reaction mechanism of an SOFC cathode Nishi M, Yokokawa H, Kishimoto H, Yamaji K, Horita T |
398 - 402 |
Visualization of oxide ionic diffusion at SOFC cathode/electrolyte interfaces by isotope labeling techniques Horita T, Nishi M, Shimonosono T, Kishimoto H, Yamaji K, Brito ME, Yokokawa H |
403 - 406 |
Effect of the oxide substrate on the nickel particle properties Kishimoto H, Suzuki A, Shimonosono T, Nishi M, Yamaji K, Brito ME, Yokokawa H, Munakata F, Horita T |
407 - 410 |
Electrochemical analysis for anode-supported microtubular solid oxide fuel cells in partial reducing and oxidizing conditions Sumi H, Yamaguchi T, Hamamoto K, Suzuki T, Fujishiro Y |
411 - 415 |
Electrical conductivity of Gd-doped ceria film at low temperatures (300-500 degrees C) Kim SW, Lee Y, Choi GM |
416 - 420 |
Effect of Sr doping on structural, electrical and electrochemical properties of Nd2CuO4 for IT-SOFC application Khandale AP, Bhoga SS |
421 - 427 |
Comparison of chromium poisoning among solid oxide fuel cell cathode materials Park E, Taniguchi S, Daio T, Chou JT, Sasaki K |
428 - 432 |
Electrical conductivity of barium substituted LSGM electrolyte materials for IT-SOFC Raghvendra, Singh RK, Singh P |
433 - 437 |
A quantitative analysis of influence of Ni particle size of SDC-supported anode on SOFC performance: Effect of particle size of SDC support Sugihara K, Asamoto M, Itagaki Y, Takemasa T, Yamaguchi S, Sadaoka Y, Yahiro H |
438 - 443 |
Delamination-resistant bi-layer electrolyte for anode-supported solid oxide fuel cells Park MY, Jung YG, Lim HT |
444 - 448 |
Chemical reactivity between Ce0.7RE0.2Mo0.1O2 (RE = Y, Sm) and 8YSZ, and conductivity studies of their solid solutions Singh K, Thangadurai V |
449 - 453 |
Oxidation properties of ferritic stainless steel in dual Ar-H-2-H2O/air atmosphere exposure with regard to SOFC interconnect application Stygar M, Brylewski T, Kruk A, Przybylski K |
454 - 459 |
Effect of polarization on Sr and Zr diffusion behavior in LSCF/GDC/YSZ system Wang FF, Brito ME, Yamaji K, Cho DH, Nishi M, Kishimoto H, Horita T, Yokokawa H |
460 - 464 |
Microstructure evolution of NiO-YSZ cermet during sintering Liu SS, Koyama M, Toh S, Matsumura S |
465 - 468 |
Electrochemical performance and stability of electrolyte-supported solid oxide fuel cells based on Y-substituted SrTiO3 ceramic anodes Ma QL, Iwanschitz B, Dashjav E, Mai A, Tietz F, Buchkremer HP |
469 - 471 |
Structure of silver bromide doped chalcogenide glasses Onodera Y, Usuki T, Nasu T, Kohara S |
472 - 475 |
First-principles analysis on proton diffusivity in La3NbO7 Kato K, Toyoura K, Nakamura A, Matsunaga K |
476 - 481 |
Analysis of the ionic conductivity in lithium salt-containing ionic liquids based on the bond strength-coordination number fluctuation model Ikeda M, Aniya M |
482 - 485 |
The study of the lithium ion motion in beta-alumina single crystal by NMR spectroscopy Chowdhury MT, Takekawa R, Iwai Y, Kuwata N, Kawamura J |
486 - 489 |
Modeling of electrical properties of grain boundaries in n-conducting barium titanate ceramics as a function of temperature and dc-bias Preis W, Sitte W |
490 - 494 |
Phase changes in lithium amide-borohydride complexes under high pressure Yamawaki H, Fujihisa H, Gotoh Y, Nakano S |
495 - 499 |
Frequency dependence of ionic conductivity in a two-dimensional system of Ag beta-alumina Kamishima O, Iwai Y, Kawamura J |
500 - 503 |
Thermally stimulated depolarization current measurements in cubic and tetragonal yttria-stabilized zirconia Horiuchi N, Tsuchiya Y, Nozaki K, Nakamura M, Nagai A, Yamashita K |
504 - 507 |
Molecular dynamics study on the nature of ferroelasticity and piezoconductivity of lanthanum cobaltite Araki W, Malzbender J, Arai Y |
508 - 511 |
Oxygen removal at grain boundaries in platinum films on YSZ Beck G, Bachmann C |
512 - 516 |
Stable sites and diffusion pathways of interstitial oxide ions in lanthanum germanate Imaizumi K, Toyoura K, Nakamura A, Matsunaga K |
517 - 521 |
Ionic and electronic conductivity of 3 mol% Fe2O3-substituted cubic yttria-stabilized ZrO2 (YSZ) and scandia-stabilized ZrO2 (ScSZ) Bohnke O, Gunes V, Kravchyk KV, Belous AG, Yanchevskii OZ, V'Yunov OI |
522 - 525 |
Zn as sintering aid for ceria-based electrolytes Villas-Boas LA, Figueiredo FML, de Souza DPF, Marques FMB |
526 - 529 |
Oxygen relaxation and oxide ion conduction of Zr-0.8 (-) xCexY0.2O1.9 (X=0, 0.3, 0.5) Ozawa M, Imura K |
530 - 535 |
Crystal structure and potential interstitial oxide ion conductivity of LnNbO(4) and LnNb(0.92) W0.08O4.04 (Ln = La, Pr, Nd) Li C, Bayliss RD, Skinner SJ |
536 - 539 |
Effect of fluorite phase on the electrical conductivity of (Sm1-xDyx)(2)Zr2O7 pyrochlore Arachi Y, Nabeshima D |
540 - 542 |
Low-temperature phase transition phenomena for bismuth-substituted La2Mo2O9 Takai S, Chisaka K, Kawaji H, Yao T, Esaka T |
543 - 547 |
Interstitial oxide ion conduction in (Sm2-xZrx)Zr2O7+delta Shlyakhtina AV, Belov DA, Knotko AV, Kolbanev IV, Streletskii AN, Shcherbakova LG |
548 - 550 |
Oxygen tracer diffusion in single crystalline yttrium silicate Argirusis C, Antonaropoulos G, Sourkouni G, Jomard F |
551 - 554 |
Relationship between crystal structure and oxide-ion conduction in Nd2Zr2O7 and La2Zr2O7 deduced by high-temperature neutron diffraction Hagiwara T, Nomura K, Yamamura H |
555 - 558 |
Oxide ion and electron transport properties in lanthanum silicate oxyapatite ceramics Mineshige A, Mieda H, Manabe M, Funahashi T, Daiko Y, Yazawa T, Nishi M, Yamaji K, Horita T, Amezawa K, Yashiro K, Kawada T, Yoshioka H |
559 - 562 |
Effects of Sn substitution on the properties of Li4SiO4 ceramic electrolyte Adnan SBRS, Mohamed NS |
563 - 567 |
Fast H+/Li+ ion exchange in Li0.30La0.57TiO3 nanopowder and films in water and in ambient air Bohnke O, Lorant S, Roffat M, Berger P |
568 - 572 |
Synthesis and properties of Al-free Li7-xLa3Zr2-xTaxO12 garnet related oxides Inada R, Kusakabe K, Tanaka T, Kudo S, Sakurai Y |
573 - 577 |
Improved lithium-ion transport in NASICON-type lithium titanium phosphate by calcium and iron doping Ortiz GF, Lopez MC, Lavela P, Vidal-Abarca C, Tirado JL |
578 - 581 |
Hetero-epitaxial growth of Li0.17La0.6TiO3 solid electrolyte on LiMn2O4 electrode for all solid-state batteries Kim S, Hirayama M, Suzuki K, Kanno R |
582 - 584 |
Electrical conductivity and dielectric permittivity of Cu6AsS5I superionic crystals Salkus T, Kezionis A, Ivanov M, Kayla MI, Kranjcec M, Studenyak IP, Banys J |
585 - 588 |
Li diffusive behavior of garnet-type oxides studied by muon-spin relaxation and QENS Nozaki H, Harada M, Ohta S, Watanabe I, Miyake Y, Ikedo Y, Jalarvo NH, Mamontov E, Sugiyama J |
589 - 592 |
Lithium ion conduction in tavorite-type LiMXO4F (M-X: Al-P, Mg-S) candidate solid electrolyte materials Jalem R, Nakayama M, Kasuga T |
593 - 596 |
Charge carrier relaxation in solid VO(over dot) conductors Kazlauskas S, Kezionis A, Salkus T, Orliukas AF |
597 - 600 |
Influence of grain size effect on electrical properties of Cu6PS5I superionic ceramics Salkus T, Kazakevicius E, Banys J, Kranjcec M, Chomolyak AA, Neimet YY, Studenyak IP |
601 - 603 |
Preparation of magnesium ion conducting MgS-P2S5-MgI2 glasses by a mechanochemical technique Yamanaka T, Hayashi A, Yamauchi A, Tatsuinisago M |
604 - 608 |
Synthesis and Na+ conduction properties of Nasicon-type glass-ceramics in the system Na2O-Y2O3-R2O3-P2O5-SiO2 (R = rare earth) and effect of Y substitution Okura T, Kawada K, Yoshida N, Monma H, Yamashita K |
609 - 612 |
Garnet-type Li6.75La3Zr1.75Nb0.25O12 synthesized by coprecipitation method and its lithium ion conductivity Imagawa H, Ohta S, Kihira Y, Asaoka T |
613 - 616 |
Improvement of electrochemical properties of LiFePO4 fine particles synthesized in ethylene glycol solution resulting from heat treatment Fujieda S, Shinoda K, Suzuki S |
617 - 621 |
Synthesis procedure and effect of Nd, Ca and Nb doping on structure and electrical conductivity of Li7La3Zr2O12 garnets Hanc E, Zajac W, Molenda J |
622 - 624 |
Pressure dependence of crystal structure of Cu2O by TOF powder neutron diffraction Ishikawa Y, Sakuma T, Takahashi H, Danilkin SA |
625 - 629 |
Oxygen vacancy redistribution in PbZrxTi1-xO3 (PZT) under the influence of an electric field Holzlechner G, Kastner D, Slouka C, Flutter H, Fleig J |
630 - 635 |
Chemistry, structure and properties of bismuth copper titanate pyrochlores Piir IV, Koroleva MS, Ryabkov YI, Pikalova EY, Nekipelov SV, Sivkov VN, Vyalikh DV |
636 - 639 |
In situ Hall effect and conductivity measurements of ITO thin films Hohmann MV, Wachau A, Klein A |
640 - 644 |
Microstructure and electrical properties of the composites based on SrTi0.5Fe0.5O3 (- delta) and Ce-0.8(Sm0.8Sr0.2)(0.2)O2 - delta Pikalova EY, Murashkina AA, Medvedev DA, Pikalov PS, Plaksin SV |
645 - 649 |
Correlation between crystal and transport properties in LnBa(0.5)Sr(0.5)Co(1.5)Fe(0.5)O(5+delta) (Ln - selected lanthanides, Y) Swierczek K, Yoshikura N, Zheng K, Klimkowicz A |
650 - 653 |
Stabilization of cubic perovskite structure upon trivalent cation substitution in Co-based mixed conductors (BaxSr1-x)(Co0.9Y0.1)O3-delta Nagai T, Ito W |
654 - 658 |
Directional solidification of ZrO2-BaZrO3 composites with mixed protonic-oxide ionic conductivity Carvalho RG, Fernandes AJS, Silva RF, Costa FM, Figueiredo FM |
659 - 663 |
Evaluation of BaY1-xPrxMn2O5+delta oxides for oxygen storage technology Klimkowicz A, Swierczek K, Zheng K, Baranowska M, Takasaki A, Dabrowski B |
664 - 667 |
Oxygen permeation and oxide ion conductivity of Ta-substituted (La, Sr)CoO3-delta Kagomiya I, Shimono Y, Kakimoto K |
668 - 671 |
Oxygen surface exchange kinetics on PrBaCo2O5+delta Yoo CY, Boukamp BA, Bouwmeester HJM |
672 - 677 |
Structure and transport properties of La0.5Sr0.5 (-) xCaxFeO3 (-) (delta) Chesnokov KY, Markov AA, Patrakeev MV, Leonidov IA, Murzakaev AM, Leonidova ON, Shalaeva EV, Kharton VV, Kozhevnikov VL |
678 - 681 |
Temperature activated electron transport in CaMnO3 Goldyreva EI, Leonidov IA, Patrakeev MV, Kozhevnikov VL |
682 - 686 |
Crystal structure of Nd2NiO4.08 Ishikawa K |
687 - 690 |
Dependence of lattice constant of Ba, Co-contained perovskite oxides on atmosphere, and measurements of water content Hashimoto D, Han D, Uda T |
691 - 695 |
Preparation and electrode properties of composite cathodes based on Bi1-x SrxFeO3-delta with Perovskite-type structure Baek D, Kamegawa A, Takamura H |
696 - 700 |
Simulation of oxygen diffusion process on electrical conductivity relaxation Kudo H, Yashiro K, Hashimoto S, Amezawa K, Kawada T |
701 - 706 |
Influence of synthesis route on electrical and electrochemical properties of Nd1.8Sr0.2NiO4 (+) (delta) Punde JD, Khandale AP, Bhoga SS |
707 - 712 |
Oxygen mobility and surface reactivity of PrNi1 (-) xCoxO3+delta-Ce0.9Y0.1O2 (-) (delta) cathode nanocomposites Sadykov V, Eremeev N, Alikina G, Sadovskaya E, Muzykantov V, Pelipenko V, Bobin A, Krieger T, Belyaev V, Ivanov V, Ishchenko A, Rogov V, Ulihin A, Uvarov N, Okhlupin Y, Mertens J, Vinke I |
713 - 718 |
Zr-doped samarium molybdates - potential mixed electron-proton conductors Savvin SN, Shlyakhtina AV, Kolbanev IV, Knotko AV, Belov DA, Shcherbakova LG, Nunez P |
719 - 723 |
Effect of Nb doping on the chemical stability of BSCF-based solid solutions Wang F, Nakamura T, Yashiro K, Mizusaki J, Arnezawa K |
724 - 727 |
Analysis of structural phase transition behavior of Ln(2)NiO(4) (+) (delta) (Ln: Nd, Pr) with variation of oxygen content Niwa E, Wakai K, Hon T, Nakamura T, Yashiro K, Mizusaki J, Hashimoto T |
728 - 732 |
Nanocrystallite effects on ion transport in molybdophosphate glasses Deb B, Ghosh A |
733 - 737 |
A new lithium-ion conducting glass ceramic in the composition of 75Li(2)S center dot 5P(2)S(3) center dot 20P(2)S(5) (mol%) Ooura Y, Machida N, Uehara T, Kinoshita S, Naito M, Shigematsu T, Kondo S |
738 - 742 |
Polycarbonate-based solid polymer electrolytes for Li-ion batteries Sun B, Mindemark J, Edstrom K, Brandell D |
743 - 746 |
Electronic structure of silver halide doped glasses Awano T |
747 - 753 |
A single-ion gel polymer electrolyte based on polymeric lithium tartaric acid borate and its superior battery performance Wang XJ, Liu ZH, Kong QS, Jiang W, Yao JH, Zhang CJ, Cui GL |
754 - 760 |
Anion conductive aromatic membrane of poly(tetra phenyl ether sulfone) containing hexa-imidazolium hydroxides for alkaline fuel cell application Hossain MA, Lim Y, Lee S, Jang H, Choi S, Jeon Y, Lee S, Ju H, Kim WG |
761 - 764 |
Cross-linked poly(oxetane) matrix for polymer electrolyte containing lithium ions Tsutsumi H, Suzuki A |
765 - 768 |
Development of high capacity all-solid-state lithium battery using quasi-solid-state electrolyte containing tetraglyme-Li-TFSA equimolar complexes Unemoto A, Gambe Y, Komatsu D, Honma I |
769 - 773 |
Molecular dynamics modeling the Li-PolystyreneTFSI/PEO blend Brandell D, Kasemagi H, Tamm T, Aabloo A |
774 - 777 |
Ionic conductive properties of solid polymer electrolyte based on poly(oxetane) with branched side chains of terminal nitrile groups Nakano Y, Tsutsumi H |
778 - 781 |
Mixed glass former effect in AgI doped silver borophosphate glasses Kabi S, Ghosh A |
782 - 784 |
Design of superionic polymers-New insights from Walden plot analysis Wang YY, Fan F, Agapov AL, Yu X, Hong KL, Mays J, Sokolov AP |
785 - 789 |
Relation between structural and conductivity relaxation in PEO and PEO based electrolytes Money BK, Hariharan K, Swenson J |
790 - 794 |
Ionic liquid assisted modification in ionic conductivity, phase transition temperature and crystallization kinetics behaviour of polymer poly(ethylene oxide) Chaurasia SK, Singh RK, Chandra S |
795 - 800 |
pi-Conjugated polycarbazole-boron complex as a colorimetric fluoride ion sensor Vedarajan R, Hosono Y, Matsumi N |
801 - 805 |
Electronic conductivity in the SiO2-PbO-Fe2O3 glass containing magnetic nanostructures Barczynski BJ, Szreder NA, Karczewski J, Gazda M |
806 - 810 |
Ion dynamics behavior in solid polymer electrolyte Srivastava N, Kumar M |
811 - 814 |
PVDF supported silica immobilized phosphotungstic acid membrane for DMFC application Pandey J, Shukla A |
815 - 820 |
Evidence of low temperature relaxation and hopping in ion conducting polymer blend Das A, Thakur AK, Kumar K |
821 - 823 |
Ag-108m tracer diffusion in HgI2-Ag2S-As2S3 glass system Boidin R, Alekseev I, Michel K, Le Coq D, Bychkov E |
824 - 828 |
Mixed alkali effect on crystallization kinetics of xNa(2)O:(50-x)Li2O:50P(2)O(5) Money BK, Hariharan K |
829 - 832 |
Li-ion conductive phosphosilicate glass ceramics synthesized by ion exchange Tsujimura T |
833 - 836 |
Structure and dynamics of solid electrolyte (LiI)(0.3)(LiPO3)(0.7) Kartini E, Nakamura M, Arai M, Inamura Y, Nakajima K, Maksum T, Honggowiranto W, Putra TYSP |
837 - 840 |
Electrical properties and structure of lead-borate glass containing iron ions Szreder NA, Barczynski RJ, Karczewski J, Gazda M |
841 - 844 |
Neutron diffraction study of LaScO3-based proton conductor Nomura K, Kageyama H |
845 - 851 |
Synthesis and characterization of sulfonated cardo based poly(arylene ether sulfone) multiblock copolymers for proton exchange membrane Jang H, Islam MM, Lim Y, Lee S, Hossain MA, Hong T, Lee S, Hong Y, Kim WG |
852 - 855 |
Chemical solution deposition of thin films for protonic ceramic fuel cells Rorvik PM, Haavik C, Griesche D, Schneller T, Lenrick F, Wallenberg LR |
856 - 859 |
Proton conducting tungsten phosphate glass and its application in intermediate temperature fuel cells Ishiyama T, Suzuki S, Nishii J, Yamashita T, Kawazoe H, Omata T |
860 - 864 |
High spatially resolved cation concentration profile at the grain boundaries of Sc-doped BaZrO3 Shirpour M, Gregori G, Houben L, Merkle R, Maier J |
865 - 869 |
Incorporation of a proton into La0.9Sr0.1(Yb1-xMx)O3-delta (M = Y, In) Okuyama Y, Ikeda S, Sakai T, Matsumoto H |
870 - 874 |
Combined bulk and surface analysis of the BaCe0.5Zr0.3Y0.16Zn0.04O3-(delta) (BCZYZ) ceramic proton-conducting electrolyte Slodczyk A, Sharp MD, Upasen S, Colomban P, Kilner JA |
875 - 878 |
Percolation conductivity in BaZrO3-BaFeO3 solid solutions Kim D, Miyoshi S, Tsuchiya T, Yamaguchi S |
879 - 882 |
Interfacial phenomena between lithium ion conductors and cathodes Yamada H, Suzuki K, Nishio K, Takemoto K, Isomichi G, Moriguchi I |
883 - 888 |
Examining the crossing of I-V curves in devices based on mixed-ionic-electronic-conductors Kalaev D, Riess I |
889 - 892 |
Oxide ionic conductivity in Pr-2(Ni, Cu, Ga)O4+delta-(Ce, Sm)O2-delta laminated film estimated with the Hebb-Wagner method Hyodo J, Ida S, Ishihara T |
893 - 896 |
Surface composition of perovskite-type materials studied by Low Energy Ion Scattering (LEIS) Druce J, Ishihara T, Kilner J |
897 - 900 |
Assessing the identifiability in isotope exchange depth profiling measurements Ciucci F, Panagakos G, Chen C, Chen DJ |
901 - 903 |
Lithium diffusive behavior in Li2MnO3 detected by muon-spin relaxation Sugiyama J, Nozaki H, Mukai K, Harada M, Mansson M, Hillier A |
904 - 907 |
Optical absorption of electronic defects and chemical diffusion in vapor transport equilibrated lithium niobate at high temperatures Shi J, Fritze H, Weidenfelder A, Swanson C, Fielitz P, Borchardt G, Becker KD |
908 - 910 |
Rapid hydrogen production from water using aluminum nanoclusters: A quantum molecular dynamics simulation study Vashishta P, Shimojo F, Ohmura S, Shimamura K, Mou W, Kalia RK, Nakano A |
911 - 913 |
Development of in situ soft X-ray absorption spectroscopic technique under high temperature and controlled atmosphere Oike R, Amezawa K, Nakamura T, Tamenori Y, Yashiro K, Kawada T |
914 - 917 |
Electrical conductivity relaxation measurements: Application of low thermal mass heater stick Chen D, Gross A, Bono DC, Kita A, Moos R, Tuller HL |
918 - 922 |
In situ X-ray diffraction studies of Pr2-xNiO4+delta crystal structure relaxation caused by oxygen loss Sadykov V, Okhlupin Y, Yeremeev N, Vinokurov Z, Shmakov A, Belyaev V, Uvarov N, Mertens J |