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Selected papers presented at the 12th International Meeting on Lithium Batteries - Nara, Japan, 27 June-2 July, 2004 - Preface Ogumi Z |
3 - 9 |
Recent trends in research activity on lithium-ion batteries in Italy Arbizzani C, Lazzari M, Mastragostino M |
10 - 14 |
Electrochemical behaviors of silicon based anode material Yoshio M, Tsumura T, Dimov N |
15 - 20 |
Advanced in situ characterization methods applied to carbonaceous materials Novak P, Goers D, Hardwick L, Holzapfel M, Scheifele W, Ufhiel J, Wursig A |
21 - 26 |
Antifluorite compounds, Li5+xFe1-xCoxO4, as a lithium intercalation host Imanishi N, Inoue Y, Hirano A, Ueda A, Takeda Y, Sakaebe H, Tabuchi M |
27 - 32 |
Effect of nano-size LiCoO2 cathode powders on Li-ion cells Kawamura T, Makidera M, Okada S, Koga K, Miura N, Yamaki J |
33 - 38 |
The development of low cost LiFePO4-based high power lithium-ion batteries Striebel K, Shim J, Sierra A, Yang H, Song XY, Kostecki R, McCarthy K |
39 - 44 |
Performance of LiNiCoO2 materials for advanced lithium-ion batteries Itou Y, Ukyo Y |
45 - 50 |
Preparation of room temperature ionic liquids based on aliphatic onium cations and. asymmetric amide anions and their electrochemical properties as a lithium battery electrolyte Matsumoto H, Sakaebe H, Tatsumi K |
51 - 57 |
Some studies on electrolytes for lithium ion batteries Wang ZX, Hu YS, Chen LQ |
58 - 64 |
Comparison of Al2O3- and AlPO4-coated LiCoO2 cathode materials for a Li-ion cell Cho J, Kim TG, Kim C, Lee JG, Kim YW, Park B |
65 - 70 |
Nanoparticulate coatings for enhanced cyclability of LiCoO2 cathodes Fey GTK, Lu CZ, Huang JD, Kumar TP, Chang YC |
71 - 78 |
A review on new solutions, new measurements procedures and new materials for rechargeable Li batteries Aurbach D |
79 - 85 |
LiBOB: Is it an alternative salt for lithium ion chemistry? Xu K, Zhang SS, Lee U, Allen JL, Jow TR |
86 - 89 |
Three dimensionally ordered composite solid materials for all solid-state rechargeable lithium batteries Kanamura K, Akutagawa N, Dokko K |
90 - 96 |
Main aging mechanisms in Li ion batteries Broussely M, Biensan P, Bonhomme F, Blanchard P, Herreyre S, Nechev K, Staniewicz RJ |
97 - 100 |
Overcharge reaction of lithium-ion batteries Ohsaki T, Kishi T, Kuboki T, Takami N, Shimura N, Sato Y, Sekino M, Satoh A |
101 - 106 |
Dual-chemistry cathode system for high-rate pulse applications Gan H, Rubino RS, Takeuchi ES |
107 - 110 |
Applications of high power density lithium ion batteries Horiba T, Maeshima T, Matsumura F, Koseki M, Arai J, Muranaka Y |
111 - 115 |
Advanced cathode materials for high-power applications Amine K, Liu J, Belharouak I, Kang SH, Bloom I, Vissers D, Henriksen G |
116 - 120 |
Effects of additives on thermal stability of Li ion cells Doughty DH, Roth EP, Crafts CC, Nagasubramanian G, Henriksen G, Amine K |
121 - 124 |
Thermal stabilities of lithium magnesium cobalt oxides for high safety lithium-ion batteries Yoshizawa H, Ikoma M |
125 - 128 |
Pyrocarbon-coating on powdery hard-carbon using chemical vapor infiltration and its electrochemical characteristics Ohzawa Y, Yamanaka Y, Naga K, Nakajima T |
129 - 133 |
Impedance measurements of low temperature mesophase carbon fibers during lithium insertion/extraction Takamura T, Eguchi S, Suzuki J, Omae O, Sekine K |
134 - 141 |
Behaviour of highly crystalline graphites in lithium-ion cells with propylene carbonate containing electrolytes Buqa H, Wursig A, Goers A, Hardwick LJ, Holzapfel M, Novak P, Krumeich F, Spahr ME |
142 - 145 |
Power capability improvement of LiBOB/PC electrolyte for Li-ion batteries Kaneko H, Sekine K, Takamura T |
146 - 150 |
Capacity fading of lithiated graphite electrodes studied by a combination of electroanalytical methods, Raman spectroscopy and SEM Markervich E, Salitra G, Levi MD, Aurbach D |
151 - 155 |
Preparation of surface-rnodified carbonaceous thin-film electrodes by NF3 plasma and their electrochemical properties Fukutsuka T, Hasegawa S, Matsuo Y, Sugie Y, Abe T, Ogumi Z |
156 - 160 |
Electrochemical studies of the Si-based composites with large capacity and good cycling stability as anode materials for rechargeable lithium ion batteries Hanai K, Liu Y, Imanishi N, Hirano A, Matsumura M, Ichikawa T, Takeda Y |
161 - 165 |
Carbon nanotube coating silicon doped with Cr as a high capacity anode Ishihara T, Nakasu M, Yoshio M, Nishiguchi H, Takita Y |
166 - 170 |
Opposite influences of K+ versus Na+ ions as electrolyte additives on graphite electrode performance Komaba S, Itabashi T, Kimura T, Groult H, Kumagai N |
171 - 175 |
Improvement on cycling efficiency of lithium by PEO-based surfactants in cross-linked gel polymer electrolyte Kang YK, Cho NJ, Noh KA, Kim JS, Lee C |
176 - 179 |
Calorimetric studies of the thermal stability of electrolyte solutions based on alkyl carbonates and the effect of the contact with lithium Zinigrad E, Larush-Asraf L, Gnanaraj JS, Gottlieb HE, Sprecher M, Aurbach D |
180 - 184 |
Nano-structured SnO2-carbon composites obtained by in situ spray pyrolysis method as anodes in lithium batteries Yuan L, Konstantinov K, Wang GX, Liu HK, Dou SX |
185 - 189 |
Nanoparticles of tin confined in microporous carbon matrices as anode materials for Li batteries Grigoriants I, Soffer A, Salitra G, Aurbach D |
190 - 194 |
Lithium insertion in Si-TiC nanocomposite materials produced by high-energy mechanical milling Guo ZP, Zhao ZW, Liu HK, Dou SX |
195 - 198 |
Design of polyacene-based negative electrode for polymeric gel electrolytes Yoshimoto N, Okamoto A, Morita M, Ando N, Hato Y |
199 - 203 |
Pretreatment of Li metal anode with electrolyte additive for enhancing Li cycleability Ishikawa M, Kawasaki H, Yoshimoto N, Morita M |
204 - 208 |
Electrochemical properties of nano-sized Li4Ti5O12 powders synthesized by a sol-gel process and characterized by X-ray absorption spectroscopy Venkateswarlu M, Chen CH, Do JS, Lin CW, Chou TC, Hwang BJ |
209 - 212 |
Layer by layer preparation of electrodes with defined thickness by multiple use of the SIC coating process Leitner KW, Besenhard JO, Winter M |
213 - 216 |
Comparative study of Li[CrTi]O-4, Li[Li1/3Ti5/3]O(4)and Li1/2Fe1/2[Li1/2Fe1/2Ti]O-4 in non-aqueous lithium cells Mukai K, Ariyoshi K, Ohzuku T |
217 - 221 |
Preparation of an electrochemically-formed spinel lithium manganese oxide and its charge-discharge behaviors Katakura K, Nishimura S, Ogumi Z |
222 - 225 |
Electrochemical evaluation of mixed oxide electrode for Li-ion secondary batteries: Li(1.1)Mn(1.9)O(4)and LiNi0.8Co0.15Al0.05O2 Myung ST, Cho MH, Hong HT, Kang TH, Kim CS |
226 - 231 |
Comparative studies between oxygen-deficient LiMn2O4 and Al-doped LiMn2O4 Chung KY, Yoon WS, Lee HS, Yang XQ, McBreen J, Deng BH, Wang XQ, Yoshio M, Wang R, Gui J, Okada M |
232 - 236 |
Preparation of spinel Li(1.06)Mn(2)O(4-z)Cl(z )cathode materials by the citrate gel method Liu WR, Wu SH, Sheu HS |
237 - 240 |
Structural and electrochemical study of Li-Al-Mn-O-F spinel material for lithium secondary batteries Kang YJ, Kim JH, Sun YK |
241 - 244 |
Preparation and morphology of three-dimensional structured LiMn2O4 films Koike S, Tatsumi K |
245 - 249 |
MgAl2O4 spinel-coated LiCoO2 as long-cycling cathode materials Fey GTK, Wang ZF, Lu CZ, Kumar TP |
250 - 253 |
Carboxylate-alumoxanes as precursors for alumina coatings to enhance the cyclability of LiCoO2 Fey GTK, Chen HG, Kumar TP |
254 - 258 |
Solvent storage-induced structural degradation of LiCoO2 for lithium ion batteries Wang ZX, Chen LQ |
259 - 263 |
Redox behaviour of iron during delithiation in LixCo1-yFeyO2 solid solution: An in situ Fe-57 Mossbauer study Aldon L, Olivier-Fourcade J, Jumas JC, Holzapfel M, Darie C, Strobel P |
264 - 269 |
A study of novel anode material CoS2 for lithium ion battery Yan JM, Huang HZ, Zhang J, Liu ZJ, Yang Y |
270 - 274 |
Preparation of LiNi0.8CO0.2O2-based cathode materials for lithium batteries by a co-precipitation method Wu SH, Yang CW |
275 - 280 |
Overcharging manganese oxides: Extracting lithium beyond Mn4+ Armstrong AR, Robertson AD, Bruce PG |
281 - 286 |
Design and analysis of triangle phase diagram for preparation of new lithium manganese oxide solid solutions with stable layered crystal structure Park KS, Cho MH, Jin SJ, Song CH, Nahm KS |
287 - 293 |
The effects of preparation condition and dopant on the electrochemical property for Fe-substituted Li2MnO3 Tabuchi M, Nakashima A, Ado K, Sakaebe H, Kobayashi H, Kageyama H, Tatsumi K, Kobayashi Y, Seki S, Yamanaka A |
294 - 299 |
Nanosized manganese oxide as cathode material for lithium batteries: Influence of carbon mixing and grinding on cyclability Ibarra-Palos A, Strobel P, Darie C, Bacia M, Soupart JB |
300 - 303 |
Cathode properties of birnessite type manganese oxide prepared by using vanadium xerogel Matsuo Y, Miyamoto Y, Fukutsuka T, Sugie Y |
304 - 309 |
Electrode properties of manganese oxide synthesized by sonochemical method in non-aqueous system Hibino M, Zhou H, Honma I |
310 - 314 |
Synthesis of metal-doped todorokite-type MnO2 and its cathode characteristics for rechargeable lithium batteries Kumagai N, Komaba S, Abe K, Yashiro H |
315 - 318 |
Lithium intercalation into alpha-Fe2O3 obtained by mechanical milling of alpha-FeOOH Morimoto H, Tobishima S, Iizuka Y |
319 - 322 |
Lithium battery having a large capacity using Fe3O4 as a cathode material Ito S, Nakaoka K, Kawamura A, Ui K, Fujimoto K, Koura N |
323 - 326 |
Nano-sized-gamma-Fe2O3 as lithium battery cathode Kanzaki S, Inada T, Matsumura T, Sonoyama N, Yamada A, Takano M, Kanno R |
327 - 330 |
Electrochemical and Structural properties of V2O5 thin films prepared by DC sputtering Navone C, Pereira-Ramos JP, Baddour-Hadjean R, Salot R |
331 - 334 |
A lithium ion cell containing a non-lithiated cathode Jarvis CR, Lain MJ, Gao Y, Yakovleva M |
335 - 339 |
Stable-cycle and high-capacity conductive sulfur-containing cathode materials for rechargeable lithium batteries Yu XU, Xie JY, Li Y, Huang HJ, Lai CY, Wang K |
340 - 344 |
Using PANI-PPDA/Au composite films as cathode of lithium secondary battery Lee MH, Luo YC, Do JS |
345 - 348 |
Preparation of poly (N-methylpyrrole) modified with pentathiepin rings and its application to pasitive active material for lithium secondary Tsutsumi H, Higashiyama H, Onimura K, Oishi T |
349 - 354 |
A comparison between intercalation of Li and Mg ions into the model Chevrel phase compound (MxMo6S8): Impedance spectroscopic studies Levi MD, Aurbach D |
355 - 359 |
Impact of co-solvent chain branching on lithium-ion battery performance Vetter J, Buqa H, Holzapfel M, Novak P |
360 - 364 |
In situ FT-IR measurement for electrochemical oxidation of electrolyte with ethylene carbonate and diethyl carbonate on cathode active material used in rechargeable lithium batteries Matsushita T, Dokko K, Kanamura K |
365 - 370 |
Transport properties of irion-aqueous lithium electrolyte coexisting with. porous solid materials - Montmorillonite-based electrolyte composite system Mizuhata M, Ito F, Deki S |
371 - 375 |
Polymer electrolytes based on hyperbranched polymer with cross-linkable groups at the terminals Itoh T, Gotoh S, Horii S, Hashimoto S, Uno T, Kubo M, Fujinami T, Yamamoto O |
376 - 379 |
Composite anode containing nano-SiO1.1 and Li2.6Co0.4N with solid PEO electrolytes for lithium-ion batteries Liu Y, Yang J, Imanishi N, Hirano A, Takeda Y, Yamamoto O |
380 - 385 |
LiFePO4 safe Li-ion polymer batteries for clean environment Zaghib K, Charest P, Guerfi A, Shim J, Perrier M, Striebel K |
386 - 390 |
Characteristics of new-type solid polymer electrolyte controlling nano-structure Niitani T, Shimada M, Kawamura K, Kanamura K |
391 - 396 |
A new polysiloxane based cross-linker for solid polymer electrolyte Kang YK, Lee J, Suh DH, Lee C |
397 - 401 |
Influence of TiO2 nano-particles on the transport properties of composite polymer electrolyte for lithium-ion batteries Lin CW, Hung CL, Venkateswarlu M, Hwang BJ |
402 - 406 |
A novel composite polymer electrolyte: Effect of mesoporous SiO2 on ionic conduction in poly(ethylene oxide)-LiCF3SO3 complex Tominaga Y, Asai S, Sumita M, Panero S, Scrosati B |
407 - 411 |
Application of mix-salts composed of lithium borate and lithium aluminate in PEO-based polymer electrolytes Tao R, Fujinami T |
412 - 417 |
Polymer electrolytes composed of lithium tetrakis(pentafluorobenzenethiolato) borate and poly(fluoroalkylcarbon)s Aoki T, Konno A, Fujinami T |
418 - 422 |
Low dimensional polymer electrolytes with enhanced Li+ conductivities Zheng Y, Liu J, Liao YP, Ungar G, Wright PV |
423 - 426 |
Lithium ion conductive polymer electrolyte by side group rotation Sato A, Okumura T, Nishimura S, Yamamoto H, Ueyama N |
427 - 430 |
Polymeric gel electrolyte containing alkyl phosphate for lithium-ion batteries Morita M, Niida Y, Yoshimoto N, Adachi K |
431 - 435 |
Electrochemical effect of coating layer on the separator based on PVdF and PE non-woven matrix Lee YM, Choi NS, Lee JA, Seol WH, Cho KY, Jung HY, Kim JW, Park JK |
436 - 440 |
Ion-conductive polymethylmethacrylate gel electrolytes for lithium batteries Vondrak J, Reiter J, Velicka J, Klapste B, Sedlarikova M, Dvorak J |
441 - 444 |
Thick vacuum deposited silicon films suitable for the anode of Li-ion battery Uehara M, Suzuki J, Tamura K, Sekine K, Takamura T |
445 - 447 |
Evaluation of the Li insertion/extraction reaction rate at a vacuum-deposited silicon film anode Yoshimura K, Suzuki J, Sekine K, Takamura T |
448 - 451 |
Study of silicon/polypyrrole composite as anode materials for Li-ion batteries Guo ZP, Wang JZ, Liu HK, Dou SX |
452 - 456 |
Li insertion/extraction characteristics of a vacuum-deposited Si-Sn two-component film Suzuki M, Suzuki J, Sekine K, Takamura T |
457 - 463 |
Changes of electro-deposited Sn-Ni alloy thin film for lithium ion battery anodes during charge discharge cycling Mukaibo H, Momma T, Osaka T |
464 - 468 |
Silver alloying effect on the electrochemical behavior of Si-Zr thin film anodes Lee KS, Kim YL, Lee SM |
469 - 472 |
Anode behavior of electroplated rough surface Sn thin films for lithium-ion batteries Morimoto H, Tobishima S, Negishi H |
473 - 477 |
Irreversible capacity of electrodeposited Sn thin film anode Inaba M, Uno T, Tasaka A |
478 - 481 |
Study of Li insertion mechanisms in transition metal antimony compounds as negative electrodes for Li-ion battery Ionica CM, Lippens PE, Fourcade JO, Jumas JC |
482 - 486 |
Preparation and characterization of CoO used as anodic material of lithium battery Do JS, Weng CH |
487 - 491 |
Synthesis of nanocrystalline transition metal and oxides for lithium storage Wang GX, Chen Y, Yang L, Yao J, Needham S, Liu HK, Ahn JH |
492 - 495 |
Mossbauer spectroscopy as an efficient tool to study Li insertion mechanisms in negative electrodes for Li ion batteries Robert F, Lippens PE, Olivier-Fourcade J, Jumas JC, Morcrette M |
496 - 500 |
All-solid-state lithium secondary batteries with SnS-P2S5 negative electrodes and Li2S-P2S5 solid electrolytes Hayashi A, Konishi T, Tadanaga K, Minami T, Tatsumisago M |
501 - 506 |
TiO2-B nanowires as negative electrodes for rechargeable lithium batteries Armstrong AR, Armstrong G, Canales J, Bruce PG |
507 - 509 |
Li-doping process for LixSiO-negative active material synthesized by chemical method for lithium-ion cells Tabuchi T, Yasuda H, Yamachi M |
510 - 515 |
Solid solution of nickel oxide and manganese oxide as negative active material for lithium secondary cells Liu XJ, Yasuda H, Yamachi M |
516 - 520 |
Structural and electrochemical properties of lithium vanadium fluorophosphate, LiVPO4F Barker J, Gover RKB, Burns P, Bryan A, Saidi MY, Swoyer JL |
521 - 524 |
Electrochemical properties of carbon coated LiFePO4 cathode materials Wang GX, Yang L, Bewlay SL, Chen Y, Liu HK, Ahn JH |
525 - 528 |
LiVOPO4 as a new cathode materials for Li-ion rechargeable battery Azmi BM, Ishihara T, Nishiguchi H, Takita Y |
529 - 533 |
Physical and electrochemical properties of LiFePO4/carbon composite synthesized at various pyrolysis periods Hsu KF, Tsay SY, Hwang BJ |
534 - 538 |
Synthesis of olivine LiFePO4 cathode materials by mechanical alloying using iron(III) raw material Kim CW, Lee MH, Jeong WT, Lee KS |
539 - 543 |
Preparation of LiFePO4 powders by co-precipitation Yang MR, Ke WH, Wu SH |
544 - 549 |
A versatile method of preparation of carbon-rich LiFePO4: A promising cathode material for Li-ion batteries Bauer EM, Bellitto C, Righini G, Pasquali M, Dell'Era A, Prosini PP |
550 - 554 |
The preparation and characterization of olivine LiFePO4 by a solution method Wu SH, Hsiao KM, Liu WR |
555 - 558 |
Formation of impurities on phospho-olivine LiFePO4 during hydrothermal synthesis Shiraishi K, Dokko K, Kanamura K |
559 - 564 |
Electrochemical properties of LiFePO4 thin films prepared by pulsed laser deposition Yada C, Iriyama Y, Jeong SK, Abe T, Inaba M, Ogumi Z |
565 - 569 |
Fluoride phosphate Li2COPO4F as a high-voltage cathode in Li-ion batteries Okada S, Ueno M, Uebou Y, Yamaki J |
570 - 574 |
Cathode properties of amorphous and crystalline FePO4 Okada S, Yamamoto T, Okazaki Y, Yamaki J, Tokunaga M, Nishida T |
575 - 579 |
Preparation of dense LiFePO4/C composite positive electrodes using spark-plasma-sintering process Takeuchi T, Tabuchi M, Nakashima A, Nakamura T, Miwa Y, Kageyama H, Tatsumi K |
580 - 583 |
Continuous solid solutions LiFe1-xCoxPO4 and its electrochemical performance Wang DY, Wang ZX, Huang XJ, Chen LQ |
584 - 588 |
Synthesis and electrochemical performances of di(trimethylolpropane) tetraacrylate-based gel polymer electrolyte Kim HS, Moon SI |
589 - 593 |
Characterization of Li1+yNixCo1-2xMnxO2 positive active materials for lithium ion batteries Shizuka K, Kobayashi T, Okahara K, Okamoto K, Kanzaki S, Kanno R |
594 - 597 |
New layer-structured LiNi1/3Co1/3Al1/3O2 prepared via water-in-oil microemulsion method Lin YK, Lu CH, Wu HC, Yang MH |
598 - 601 |
Synthesis of (1-2x)LiNi1/2Mn1/2O2 center dot xLi[Li1/3Mn2/3]O-2 center dot xLiCoO(2) (0 <= x <= 0.5) electrode materials and comparative study on cooling rate Zhang LQ, Takada K, Ohta N, Fukuda K, Sasaki T |
602 - 605 |
Effect of fluorine on Li[Ni1/3Co1/3Mn1/3]O2-zFz as lithium intercalation material Kim GH, Kim MH, Myung ST, Sun YK |
606 - 610 |
Effect of cathode structure on cell performance in wireless charging process Hu SK, Chou TC, Hwang BJ |
611 - 616 |
Development of a lithium ion battery using a new cathode material Nukuda T, Inamasu T, Fujii A, Endo D, Nakagawa H, Kozono S, Iguchi T, Kuratomi J, Kohno K, Izuchi S, Oshitani M |
617 - 621 |
Effects of synthesis on electrochemical, structural and physical properties of solution phases of Li2MnO3-LiNi1-xCoxO2 Whitfield PS, Niketic S, Davidson IJ |
622 - 625 |
Synthesis and structural characterization of layered Li[Ni1/3+xCo1/3Mn1/3-2xMox]O-2 cathode materials by ultrasonic spray pyrolysis Park SH, Oh SW, Sun YK |
626 - 629 |
Electrochemical performance of layered Li[NixCo1-2xMnx]O-2 cathode materials synthesized by a sol-gel method Chen CH, Wang CJ, Hwang BJ |
630 - 635 |
Structural and electrochemical characterization of Li[(CoNi1/2Mn1/2)(x)(Li1/3Mn2/3)((1-2x))]O-2 solid solutions with layered lithium manganese oxides Jin SJ, Park KS, Song CH, Cho MH, Nahm KS, Hahn YB, Lee Y |
636 - 639 |
Electrochemical behaviors of LiCo1/3Ni1/3Mn1/3O2 in lithium batteries at elevated temperatures Yabuuchi N, Ohzuku T |
640 - 644 |
Investigation on lithium de-intercalation mechanism for Li1-yNi1/3Mn1/3Co1/3O2 Kobayashi H, Arachi Y, Emura S, Kageyama H, Tatsumi K, Kamiyama T |
645 - 649 |
Improvement of structural integrity and battery performance of LiNi0.5Mn0.5O2 by Al and Ti doping Myung ST, Komaba S, Hirosaki N, Hosoya K, Kumagai N |
650 - 653 |
Effect of fluorine on the electrochemical properties of layered Li(Ni0.5Mn0.5)O-2 cathode materials Kang SH, Belharouak I, Sun YK, Amine K |
654 - 657 |
Layered Li(Li0.2Ni0.15+0.5zCo0.10Mn0.55-0.5z)O-2-F-z(z) cathode materials for Li-ion secondary batteries Kang SH, Amine K |
658 - 663 |
Electrochemical properties of Li[NixLi(1-2x)/3Mn(2-x)/3]O-2 (0 <= x <= 0.5) cathode materials prepared by a sol-gel Hwang BJ, Wang CJ, Chen CH, Tsai YW, Venkateswarlu M |
664 - 669 |
The study of LiNi(0.5)Mn(1.5)O(4)5-V cathodes for Li-ion batteries Talyosef Y, Markovsky B, Salitra G, Aurbach D, Kim HJ, Choi S |
670 - 673 |
Research on spray-dried lithium titanate as electrode materials for lithium ion batteries Wen ZY, Gu ZH, Huang SH, Yang JH, Lin ZX, Yamamoto O |
674 - 677 |
Investigation on cyclability in LixLa1/3NbO3 electrode material for rechargeable lithium ion battery Nakayama M, Uchimoto Y, Wakihara M |
678 - 681 |
Lithiation-delithiation properties of new compound LiNi0.5Ti0.5O2 with cubic structure Sun YC, Wang ZX, Huang XJ, Chen LQ |
682 - 684 |
Mixed ionic liquid as electrolyte for lithium batteries Diaw A, Chagnes A, Carre B, Willmann P, Lemordant D |
685 - 688 |
Cyano-containing quaternary ammonium-based ionic liquid as a'co-solvent' for lithium battery electrolyte Egashira M, Nakagawa M, Watanabe L, Okada S, Yamaki JI |
689 - 692 |
Alkylated imidazolium salt electrolyte for lithium cells Hayashi K, Nemoto Y, Akuto K, Sakurai Y |
693 - 697 |
Discharge-charge properties of Li/LiCoO2 cell using room temperature ionic liquids (RTILs) based on quaternary ammonium cation - Effect of the structure Sakaebe H, Matsumoto H, Tatsumi K |
698 - 702 |
Development of non-flammable lithium secondary battery with ambient-temperature molten salt electrolyte - Performance of binder-free carbon-negative electrode Ui K, Minami T, Ishikawa K, Idemoto Y, Koura N |
703 - 706 |
Formation of nano-sized particles of a solid electrolyte by laser ablation Takada K, Ma R, Osada M, Ohta N, Zhang L, Sasaki T |
707 - 710 |
Solid electrolyte, thio-LISICON, thin film prepared by pulsed laser deposition Ohta N, Takada K, Osada M, Zhang LQ, Sasaki T, Watanabe M |
711 - 714 |
Design of composite positive electrode in all-solid-state secondary batteries with Li2S-P2S5 glass-ceramic electrolytes Mizuno F, Hayashi A, Tadanaga K, Tatsumisago M |
715 - 718 |
Electrical and electrochemical properties of Li2S-P2S5-P2O5 glass-ceramic electrolytes Ohtomo T, Mizuno F, Hayashi A, Tadanaga K, Tatsumisago M |
719 - 722 |
Development of high-voltage and high-capacity all-solid-state lithium secondary batteries Kobayashi Y, Seki S, Yamanaka A, Miyashiro H, Mita Y, Iwahori T |
723 - 726 |
The study of K2FeO4 (Fe6+-super iron compound) as a cathode material for rechargeable lithium batteries Koltypin M, Licht S, Vered RT, Nashits V, Aurbach D |
727 - 731 |
Impedance spectra of porous, composite intercalation electrodes: The origin of the low-frequency semicircles Levi MD, Aurbach D |
732 - 735 |
Performance and thermal stability of LiCoO2 cathode modified with ionic liquid Lee SY, Yong HH, Kim SK, Kim JY, Ahn SH |
736 - 740 |
Study the fading mechanism of LiMn2O4 battery with spherical and flake type graphite as anode materials Wu HC, Guo ZZ, Wen HP, Yang MH |
741 - 744 |
Degradation mechanism analysis of all-solid-state lithium polymer secondary batteries by using the impedance measurement Seki S, Kobayashi Y, Miyashiro H, Yamanaka A, Mita Y, Iwahori T |
745 - 748 |
Reduction of charge transfer resistance at the lithium phosphorus oxynitride/lithium cobalt oxide interface by thermal treatment Iriyama Y, Kako T, Yada C, Abe T, Ogumi Z |
749 - 752 |
Li+ and Na+ transfer through interfaces between inorganic solid electrolytes and polymer or liquid electrolytes Sagane F, Abe T, Iriyama Y, Ogumi Z |
753 - 757 |
Capacity degradation of lithium rechargeable batteries Zheng JR, Moss PL, Fu R, Ma Z, Xin Y, Au G, Plichta EJ |
758 - 761 |
Fabrication by using a sputtering method and charge-discharge properties of large-sized and thin-filmed lithium ion rechargeable batteries Nakazawa H, Sano K, Baba M |
762 - 765 |
Miniature pin-type lithium batteries for medical applications Nagata M, Saraswat A, Nakahara H, Yumoto H, Skinlo DM, Takeya K, Tsukamoto H |
766 - 769 |
Lithium-air batteries using hydrophobic room temperature ionic liquid electrolyte Kuboki T, Okuyama T, Ohsaki T, Takami N |
770 - 774 |
Thermal behaviors of lithium-ion batteries during high-rate pulse cycling Saito Y |
775 - 778 |
Development of new safe electrode for lithium rechargeable battery Kise M, Yoshioka S, Hamano K, Takemura D, Nishimura T, Urushibata H, Yoshiyasu H |
779 - 783 |
A powder particle size effect on ceramic powder based separator for lithium rechargeable battery Takemura D, Aihara S, Hamano K, Kise M, Nishimura T, Urushibata H, Yoshiyasu H |
784 - 787 |
Performance and management of implantable lithium battery systems for left ventricular assist devices and total artificial hearts Dodd J, Kishiyama C, Mukainakano H, Nagata M, Tsukamoto H |
788 - 792 |
Development of a high power lithium secondary battery for hybrid electric vehicles Arai J, Yamaki T, Yamauchi S, Yuasa T, Maeshima T, Sakai T, Koseki M, Horiba T |
793 - 797 |
0.4 Ah class graphite/LiMn2O4 lithium-ion battery prototypes Appetecchi GB, Prosini PP |
798 - 803 |
Development and testing of 100 kW/1 min Li-ion battery systems for energy storage applications Clark NH, Doughty DH |
804 - 808 |
Investigation of lithium battery nanoelectrode arrays and their component nanobatteries Vullum F, Teeters D |
809 - 812 |
Moisture-uptake by the positive active material from the casting solvent and the ambient environment Saharan V, Roberts J, Manev V, Chia YH, MacLean G, McMullen SR |