1 - 1 |
SPECIAL ISSUE Selected Papers presented at the 14th INTERNATIONAL MEETING ON LITHIUM BATTERIES (IMLB-2008) Tianjin, China 22-28 June 2008 Preface Wang JQ |
2 - 8 |
Effect of Ag additive on the performance of LiNi1/3Co1/3Mn1/3O2 cathode material for lithium ion battery Guo R, Shi PF, Cheng XQ, Ma YL, Tan Z |
9 - 15 |
Valence change and local structure during cycling of layer-structured cathode materials Liao PY, Duh JG, Lee JF |
16 - 21 |
High performance silicon carbon composite anode materials for lithium ion batteries Luo ZJ, Fan DD, Liu XL, Mao HY, Yao CF, Deng ZY |
22 - 27 |
Towards optimized preparation of cathode materials: How can modeling and concepts be used in practice Gaberscek M |
28 - 33 |
Synthesis and characterization of LiNi0.6Mn0.4-xCoxO2 as cathode materials for Li-ion batteries Li JG, Wang L, Zhang Q, He XM |
34 - 39 |
Structural and electrochemical study of the reaction of lithium with silicon nanowires Chan CK, Ruffo R, Hong SS, Huggins RA, Cui Y |
40 - 44 |
Microemulsion preparation and electrochemical characteristics of LiNi1/3Co1/3Mn1/3O2 powders Lu CH, Lin YK |
45 - 50 |
Effects of roasting temperature and modification on properties of Li2FeSiO4/C cathode Li LM, Guo HJ, Li XH, Wang ZX, Peng WJ, Xiang KX, Cao X |
51 - 58 |
In-situ XAS study on Li2MnSiO4 and Li2FeSiO4 cathode materials Dominko R, Arcon I, Kodre A, Hanzel D, Gaberscek M |
59 - 65 |
Effect of firing temperature on the electrochemical performance of LiMn0.4Fe0.6PO4/C materials prepared by mechanical activation Baek DH, Kim JK, Shin YJ, Chauhan GS, Ahn JH, Kim KW |
66 - 71 |
Investigation of solid electrolyte interfacial layer development during continuous cycling using ac impedance spectra and micro-structural analysis Moss PL, Au G, Plichta EJ, Zheng JP |
72 - 80 |
Surface film formation on a carbonaceous electrode: Influence of the binder chemistry El Clualtania L, Dedryvere R, Ledeuil JB, Siret C, Biensan P, Desbrieres J, Gonbeau D |
81 - 88 |
Electrochemical activity of Li2FeTiO4 and Li2MnTiO4 as potential active materials for Li ion batteries: A comparison with Li2NiTiO4 Kuzma M, Dominko R, Meden A, Makovec D, Bele M, Jamnik J, Gaberscek M |
89 - 94 |
Fourier-transform infrared spectroscopic studies on the solid electrolyte interphase formed on Li-doped spinel Li1.05Mn1.96O4 cathode Wu C, Bai Y, Wu F |
95 - 100 |
Preparation of manganese oxide with high density by decomposition of MnCO3 and its application to synthesis of LiMn2O4 Guo HJ, Li XH, Wang ZX, Peng WJ, Cao X, Li HF |
101 - 107 |
Effects of entropy changes in anodes and cathodes on the thermal behavior of lithium ion batteries Williford RE, Viswanathan VV, Zhang JG |
108 - 113 |
Electrochemical properties of carbon-coated Si/B composite anode for lithium ion batteries Kim HS, Chung KY, Cho BW |
114 - 120 |
Improvement of cathode performance of LiMn2O4 as a cathode active material for Li ion battery by step-by-step supersonic-wave treatments Kitamura N, Iwatsuki H, Idemoto Y |
121 - 126 |
Preparation and characterization of a new nanosized silicon-nickel-graphite composite as anode material for lithium ion batteries Wang XY, Wen ZY, Liu Y, Xu XG, Lin J |
127 - 132 |
New insight into the discharge process of sulfur cathode by electrochemical impedance spectroscopy Yuan LX, Qiu XP, Chen LQ, Zhu WT |
133 - 138 |
Ion-conducting lithium bis(oxalato)borate-based polymer electrolytes Reiter J, Dominko R, Nadherna M, Jakubec I |
139 - 144 |
Self-supported poly(methyl methacrylate-acrylonitrile-vinyl acetate)-based gel electrolyte for lithium ion battery Liao YH, Zhou DY, Rao MM, Li WS, Cai ZR, Liang Y, Tan CL |
145 - 148 |
High-rate performance of all-solid-state lithium secondary batteries using Li4Ti5O12 electrode Kitaura H, Hayashi A, Tadanaga K, Tatsumisago M |
149 - 154 |
Flame co-synthesis of LiMn2O4 and carbon nanocomposites for high power batteries Patey TJ, Buchel R, Ng SH, Krumeich F, Pratsinis SE, Novak P |
155 - 162 |
Study of LiFePO4 cathode materials coated with high surface area carbon Lu CZ, Fey GTK, Kao HM |
163 - 168 |
Electrochemical properties of Cu6Sn5 alloy powders directly prepared by spray pyrolysis Ju SH, Jang HC, Kang YC |
169 - 178 |
Electrochemical properties of LiFePO4 prepared via ball-milling Fey GTK, Chen YG, Kao HM |
179 - 184 |
Nanosized high voltage cathode material LiMg0.05Ni0.45Mn1.5O4: Structural, electrochemical and in situ investigation Lafont U, Locati C, Borghols WJH, Lasinska A, Dygas J, Chadwick AV, Kelder EM |
185 - 190 |
Effects of preparation conditions on the electrochemical and morphological characteristics of Li4Ti5O12 powders prepared by spray pyrolysis Ju SH, Kang YC |
191 - 196 |
Characterization of all-solid-state secondary batteries with LiCoO2 thin films prepared by ECR sputtering as positive electrodes Takahashi M, Hayashi M, Shodai T |
197 - 203 |
Functional interface of polymer modified graphite anode Komaba S, Ozeki T, Okushi K |
204 - 210 |
Cobalt oxide thin film prepared by an electrochemical route for Li-ion battery Do JS, Dai RF |
211 - 216 |
Li-B-O-N electrolytes for all-solid-state thin film batteries Kim JM, Park GB, Lee KC, Park HY, Nam SC, Song SW |
217 - 223 |
On the thermal behavior of model Li-LixCoO2 systems containing ionic liquids in standard electrolyte solutions Larush L, Borgel V, Markevich E, Haik O, Zinigrad E, Aurbach D, Semrau G, Schmidt M |
224 - 229 |
Electrochemical characteristics of Sn film prepared by pulse electrode position method as negative electrode for lithium secondary batteries Ui K, Kikuchi S, Kadoma Y, Kumagai N, Ito S |
230 - 239 |
Significant effects of poly(3,4-ethylenedioxythiophene) additive on redox responses of poly(2,5-dihydroxy-1,4-benzoquinone-3,6-methylene) cathode for rechargeable Li batteries Oyama N, Sarukawa T, Mochizuki Y, Shimomura T, Yamaguchi S |
240 - 247 |
Preparation of the electrochemically formed spinel-lithium manganese oxides Katakura K, Wada K, Kajiki Y, Yamamoto A, Ogumi Z |
248 - 255 |
A comparative study of electrodes comprising nanometric and submicron particles of LiNi0.50Mn0.50O2, LiNi0.33Mn0.33Co0.33O2, and LiNi0.40Mn0.40Co0.20O2 layered compounds Martha SK, Sclar H, Framowitz ZS, Kovacheva D, Saliyski N, Gofer Y, Sharon P, Golik E, Markovsky B, Aurbach D |
256 - 262 |
The effect of carbon coating thickness on the capacity of LiFePO4/C composite cathodes Cho YD, Fey GTK, Kao HM |
263 - 268 |
Analysis of the Galvanostatic Intermittent Titration Technique (GITT) as applied to a lithium-ion porous electrode Dees DW, Kawauchi S, Abraham DP, Prakash J |
269 - 278 |
Dependence of property, crystal structure and electrode characteristics on Li content for LixNi0.8Co0.2O2 as a cathode active material for Li secondary battery Idemoto Y, Takanashi Y, Kitamura N |
279 - 287 |
Electrochemical studies on LiCoO2 surface coated with Y3Al5O12 for lithium-ion cells Chen JM, Cho YD, Hsiao CL, Fey GTK |
288 - 296 |
A short review on surface chemical aspects of Li batteries: A key for a good performance Martha SK, Markevich E, Burgel V, Salitra G, Zinigrad E, Markovsky B, Sclar H, Pramovich Z, Heik O, Aurbach D, Exnar I, Buqa H, Drezen T, Semrau G, Schmidt M, Kovacheva D, Saliyski N |
297 - 302 |
Electrospraying-assisted synthesis of tin nanoparticles for Li-ion battery electrodes Valvo M, Lafont U, Munao D, Kelder EM |
303 - 308 |
Li-ion electrolyte modeling: The impact of adding supportive salts Danilov D, Notten PHL |
309 - 314 |
Effects of heteroatoms and nanosize on tin-based electrodes Alcantara R, Ortiz G, Rodriguez I, Tirado JL |
315 - 323 |
New gel-type polyolefin electrolyte film for rechargeable lithium batteries Oyama N, Fujimoto Y, Hatozaki O, Nakano K, Maruyama K, Yamaguchi S, Nishijima K, Iwase Y, Kutsuwa Y |
324 - 330 |
A new ternary Li4FeSb2 structure formed upon discharge of the FeSb2/Li cell Villevieille C, Fraisse B, Womes M, Jumas JC, Monconduit L |
331 - 336 |
On the application of ionic liquids for rechargeable Li batteries: High voltage systems Borgel V, Markevich E, Aurbach D, Semrau G, Schmidt M |
337 - 343 |
Electrochemical properties and Li deposition morphologies of surface modified graphite after grinding Honbo H, Takei K, Ishii Y, Nishida T |
344 - 352 |
High voltage spinel oxides for Li-ion batteries: From the material research to the application Patoux S, Daniel L, Bourbon C, Lignier H, Pagano C, Le Cras F, Jouanneau S, Martinet S |
353 - 358 |
Preparation and electrochemical properties of layer-structured LiNi1/3Co1/3Mn1/3-yAlyO2 Lin YK, Lu CH |
359 - 364 |
Novel electrolytes based on aliphatic oligoether dendrons Zhao JB, Ishigaki Y, Yamanaka M, Fukuda H, Aoi K |
365 - 370 |
Li-ion transport in all-solid-state lithium batteries with LiCoO2 using NASICON-type glass ceramic electrolytes Xie J, Imanishi N, Zhang T, Hirano A, Takeda Y, Yamamoto O |
371 - 377 |
Study on lithium/air secondary batteries-Stability of NASICON-type lithium ion conducting glass-ceramics with water Hasegawa S, Imanishi N, Zhang T, Xie J, Hirano A, Takeda Y, Yamamoto O |
378 - 384 |
Ni sulfide/Ti50Ni50 electrode with the superelasticity Bae KW, Kim HS, Cho GB, Kim KW, Cho KK, Lee JH, Nam TH |
385 - 390 |
Lithium ion transport pathways in xLiCl-(1-x)(0.6Li(2)O-0.4P(2)O(5)) glasses Rao RP, Tho TD, Adams S |
391 - 396 |
Effect of synthetic conditions on the electrochemical properties of LiMn0.4Fe0.6PO4/C synthesized by sol-gel technique Kim JK, Chauhan GS, Ahn JH, Ahn HJ |
397 - 401 |
Shift of redox potential and kinetics in Li-x(MnyFe1-y)PO4 Kobayashi G, Yamada A, Nishimura S, Kanno R, Kobayashi Y, Seki S, Ohno Y, Miyashiro H |
402 - 410 |
On the electrochemistry of an anode stack for all-solid-state 3D-integrated batteries Baggetto L, Oudenhoven JFM, van Dongen T, Klootwijk JH, Mulder M, Niessen RAH, de Croon MHJM, Notten PHL |
411 - 415 |
Preparation and electrochemical properties of indium- and sulfur-doped LiMnO2 with orthorhombic structure as cathode materials Su Z, Lu ZW, Gao XP, Shen PW, Liu XJ, Wang JQ |
416 - 422 |
Preparation and electrochemical properties of pure lithium cobalt oxide films by electron cyclotron resonance sputtering Hayashi M, Takahashi M, Shodai T |
423 - 428 |
Effect of synthesis temperature on the properties of LiFePO4/C composites prepared by carbothermal reduction Wang L, Liang GC, Ou XQ, Zhi XK, Zhang JP, Cui JY |
429 - 434 |
Characteristics of lithium-ion battery with non-flammable electrolyte Tsujikawa T, Yabuta K, Matsushita T, Matsushima T, Hayashi K, Arakawa M |
435 - 439 |
Electrochemical properties of LiFe0.9Mn0.1PO4/Fe2P cathode material by mechanical alloying Lee KT, Lee KS |
440 - 444 |
Preparation and characterization of Ti4+-doped LiFePO4 cathode materials for lithium-ion batteries Wu SH, Chen MS, Chien CJ, Fu YP |
445 - 448 |
A comparison study of capacity degradation mechanism of LiFePO4-based lithium ion cells Jin HF, Liu Z, Teng YM, Gao JK, Zhao Y |
449 - 453 |
Thin nanostructured LiMn2O4 films by flame spray deposition and in situ annealing method Chew SY, Patey TJ, Waser O, Ng SH, Buchel R, Tricoli A, Krumeich F, Wang J, Liu HK, Pratsinis SE, Novak P |
454 - 457 |
Interaction between carbon dioxide and ionic liquids: Novel electrolyte candidates for safer Li-ion batteries Locati C, Lafont U, Peters CJ, Kelder EM |
458 - 461 |
Study on gamma-butyrolactone for LiBOB-based electrolytes Huang JY, Liu XJ, Kang XL, Yu ZX, Xu TT, Qiu WH |
462 - 466 |
Morphology and electrical properties of carbon coated LiFePO4 cathode materials Zhao B, Jiang Y, Zhang HJ, Tao HH, Zhong MY, Jiao Z |
467 - 470 |
Preparation and performance of novel Li-Ti-Si-P-O-N thin-film electrolyte for thin-film lithium batteries Wu F, Liu YD, Chen RJ, Chen S, Wang GQ |
471 - 475 |
Cathode having high rate performance for a secondary Li-ion cell surface-modified by aluminum oxide nanoparticles Okumura T, Fukutsuka T, Uchimoto Y, Amezawa K, Kobayashi S |
476 - 479 |
Li3V2(PO4)(3) cathode material synthesized by chemical reduction and lithiation method Zheng JC, Li XH, Wang ZX, Guo HJ, Hu QY, Peng WJ |
480 - 484 |
Improvement of cycling stability of Si anode by mechanochemcial reduction and carbon coating Liu Y, Wen ZY, Wang XY, Yang XL, Hirano A, Imanishi N, Takeda Y |
485 - 489 |
Fabrication of all solid-state lithium-ion batteries with three-dimensionally ordered composite electrode consisting of Li0.35La0.55TiO3 and LiMn2O4 Hara M, Nakano H, Dokko K, Okuda S, Kaeriyama A, Kanamura K |
490 - 493 |
A promising active anode material of Li-ion battery for hybrid electric vehicle use Sato Y, Nagayama K, Sato Y, Takamura T |
494 - 498 |
Effect of protecting metal oxide (Co3O4) layer on electrochemical properties of spinel Li1.1Mn1.9O4 as a cathode material for lithium battery applications Lee KS, Myung ST, Bang H, Amine K, Kim DW, Sun YK |
499 - 502 |
Electrochemical behaviors of wax-coated Li powder/Li4Ti5O12 cells Park HE, Seong IW, Yoon WY |
503 - 506 |
Electrochemical intercalation of lithium ions into LiV3O8 in an aqueous electrolyte Wang GJ, Qu QT, Wang B, Shi Y, Tian S, Wu YP, Holze R |
507 - 510 |
Performance of LiNi0.5Mn1.5O4 prepared by solid-state reaction Chen ZY, Zhu HL, Ji S, Linkov V, Zhang JL, Zhu W |
511 - 514 |
Electrochemical behavior of a lithium-pre-doped carbon-coated silicon monoxide anode cell Seong IW, Kim KT, Yoon WY |
515 - 518 |
Structural changes and thermal stability of charged LiNi1/3Co1/3Mn1/3O2 cathode material for Li-ion batteries studied by time-resolved XRD Nam KW, Yoon WS, Yang XQ |
519 - 521 |
Surface structure investigation of LiNi0.8Co0.2O2 by AlPO4 coating and using functional electrolyte Zeng YW, He JH |
522 - 526 |
LiFePO4 as an optimum power cell material Sun LQ, Cui RH, Jalbout AF, Li MJ, Pan XM, Wang RS, Xie HM |
527 - 530 |
All-solid-state lithium secondary batteries with oxide-coated LiCoO2 electrode and Li2S-P2S5 electrolyte Sakuda A, Kitaura H, Hayashi A, Tadanaga K, Tatsumisago M |
531 - 535 |
Solid polymer electrolytes composed of polyanionic lithium salts and polyethers Itoh T, Mitsuda Y, Ebina T, Uno T, Kubo M |
536 - 538 |
Improvement of Li-ion conductivity in A-site disordering lithium-lanthanum-titanate perovskite oxides by adding LiF in synthesis Okumura T, Yokoo K, Fukutsuka T, Uchimoto Y, Saito M, Amezawa K |
539 - 542 |
Studies on the enhancement of solid electrolyte interphase formation on graphitized anodes in LiX-carbonate based electrolytes using Lewis acid additives for lithium-ion batteries Li LF, Xie B, Lee HS, Li H, Yang XQ, McBreen J, Huang XJ |
543 - 546 |
One-dimensional nanostructures as electrode materials for lithium-ion batteries with improved electrochemical performance Wang GX, Shen XP, Yao J |
547 - 551 |
Preparation and performances of LiFePO4 cathode in aqueous solvent with polyacrylic acid as a binder Cai ZP, Liang Y, Li WS, Xing LD, Liao YH |
552 - 556 |
Some new facts on electrochemical reaction mechanism for transition metal oxide electrodes Chen CH, Ding N, Wang L, Yu Y, Lieberwirth I |
557 - 560 |
Characterization of interphases appearing on LiNi0.5Mn0.5O2 using Li-7 MAS NMR Dupre N, Martina JF, Guyomard D, Yamada A, Kanno R |
561 - 565 |
Electrochemistry of LiMn2O4 epitaxial films deposited on various single crystal substrates Sonoyama N, Iwase K, Takatsuka H, Matsumura T, Imanishi N, Takeda Y, Kanno R |
566 - 570 |
Three-dimensional Li2O-NiO-CoO composite thin-film anode with network structure for lithium-ion batteries Zhang P, Guo ZP, Kang SG, Choi YJ, Kim CJ, Kim KW, Liu HK |
571 - 575 |
Electrochemical characterization of Li2MnO3-Li[Ni1/3Co1/3Mn1/3]O-2-LiNiO2 cathode synthesized via co-precipitation for lithium secondary batteries Lim JH, Bang H, Lee KS, Amine K, Sun YK |
576 - 579 |
New electrolytes based on glutaronitrile for high energy/power Li-ion batteries Abu-Lebdeh Y, Davidson I |
580 - 584 |
TiO2(B) as a promising high potential negative electrode for large-size lithium-ion batteries Inaba M, Oba Y, Niina F, Murota Y, Ogino Y, Tasaka A, Hirota K |
585 - 589 |
Mesoporous anatase TiO2 composite electrodes: Electrochemical characterization and high rate performances Mancini M, Kubiak P, Geserick J, Marassi R, Husing N, Wohlfahrt-Mehrens M |
590 - 593 |
Electrode engineering of nanoparticles for lithium-ion batteries-Role of dispersion technique Patey TJ, Hintennach A, La Mantia F, Novak P |
594 - 598 |
A porous poly(vinylidene fluoride) gel electrolyte for lithium ion batteries prepared by using salicylic acid as a foaming agent Zhang HP, Zhang P, Li GC, Wu YP, Sun DL |
599 - 601 |
Electronic structures of partially fluorinated lithium manganese spinel oxides and their electrochemical properties Matsumoto K, Fukutsuka T, Okumura T, Uchimoto Y, Amezawa K, Inaba M, Tasaka A |
602 - 606 |
The important role of additives for improved lithium ion battery safety Park G, Nakamura H, Lee Y, Yoshio M |
607 - 610 |
Enhanced capacity retention of Co and Li doubly doped LiMn2O4 Wang CY, Lu SG, Kan SR, Pang J, Jin WR, Zhang XJ |
611 - 615 |
Synthesis and characterisation of iron tungstate anode materials Kendrick E, Swiatek A, Barker J |
616 - 619 |
Wet-laid non-woven fabric for separator of lithium-ion battery Wang Y, Zhan HY, Hu J, Liang Y, Zeng SS |
620 - 623 |
Electrochemical properties of LiMnO2 for lithium polymer battery Jin EM, Jin B, Jeon YS, Park KH, Gu HB |
624 - 628 |
High-performance, nano-structured LiMnPO4 synthesized via a polyol method Wang DY, Buqa H, Crouzet M, Deghenghi G, Drezen T, Exnar I, Kwon NH, Miners JH, Poletto L, Graetzel M |
629 - 632 |
All-solid-state lithium secondary batteries using nanocomposites of NiS electrode/Li2S-P2S5 electrolyte prepared via mechanochemical reaction Nishio Y, Kitaura H, Hayashi A, Tatsumisago M |
633 - 637 |
Effects of radio-frequency sputtering powers on the microstructures and electrochemical properties of LiCoO2 thin film electrodes Pan HJ, Yang Y |
638 - 642 |
Polymorphs of Li3PO4 and Li2MSiO4 (M = Mn, Co) The role of pressure de Dompablo MEAY, Amador U, Gallardo-Amores JM, Moran E, Ehrenberg H, Dupont L, Dominko R |
643 - 645 |
Determination of lithium ion diffusion in lithium-manganese-oxide-spinel thin films by secondary-ion mass spectrometry Okumura T, Fukutsuka T, Uchimoto Y, Sakai N, Yamaji K, Yokokawa H |
646 - 650 |
Design and fabrication of multifunctional structural batteries Liu P, Sherman E, Jacobsen A |
651 - 654 |
Structure and properties of Li2S-P2S5-P2S3 glass and glass-ceramic electrolytes Minami K, Hayashi A, Ujiie S, Tatsumisago M |
655 - 659 |
Electrochemical performance of La-Co-Sn alloys as anode materials for Li-ion batteries Wang G, Lu ZW, Gao XP, Liu XJ, Wang JQ |
660 - 664 |
Studies of interfacial reactions on thin film electrodes of Sn during initial cycling using infrared spectroscopy Baek SW, Hong SJ, Kim DW, Song SW |
665 - 668 |
Micro- and macroscopic magnetism in LixNiO2 Mukai K, Sugiyama J, Ikedo Y, Russo PL, Andreica D, Amato A, Ariyoshi K, Ohzuku T |
669 - 671 |
Electrochemical performance of NiP2 negative electrodes in all-solid-state lithium secondary batteries Hayashi A, Inoue A, Tatsumisago M |
672 - 675 |
Characterization of all-solid-state lithium secondary batteries using CuxMo6S8-y electrode and Li2S-P2S5 solid electrolyte Nagao M, Kitaura H, Hayashi A, Tatsumisago M |
676 - 680 |
Bulk and surface structure investigation for the positive electrodes of degraded lithium-ion cell after storage test using X-ray absorption near-edge structure measurement Mori D, Kobayashi H, Shikano M, Nitani H, Kageyama H, Koike S, Sakaebe H, Tatsumi K |
681 - 684 |
Synthesis and electrochemical properties of metals-doped LiFePO4 prepared from the FeSO4 center dot 7H(2)O waste slag Wu L, Li XH, Wang ZX, Li LJ, Zheng JC, Guo HJ, Hu QY, Fang J |
685 - 688 |
Effect of heptamethyldisilazane as an additive on the stability performance of LiMn2O4 cathode for lithium-ion battery Li YK, Zhang RX, Liu JS, Yang CW |
689 - 692 |
Theoretical study on reduction mechanism of 1,3-benzodioxol-2-one for the formation of solid electrolyte interface on anode of lithium ion battery Xing LD, Wang CY, Xu MQ, Li WS, Cai ZP |
693 - 696 |
Liquid electrolyte based on lithium bis-fluorosulfonyl imide salt: Aluminum corrosion studies and lithium ion battery investigations Abouimrane A, Ding J, Davidson IJ |
697 - 701 |
Sb2O3-modified Li1.1CoO2 phase as cathode material for lithium ion battery Yu JP, Hu XH, Zhan H, Zhou YH |
702 - 705 |
Intermittent X-ray diffraction study of kinetics of delithiation in nano-scale LiFePO4 Jones JL, Hung JT, Meng YS |
706 - 710 |
Electrochemical properties of rechargeable aqueous lithium ion batteries with an olivine-type cathode and a Nasicon-type anode Liu XH, Saito T, Doi T, Okada S, Yamaki J |
711 - 715 |
Performance improvement of poly(acrylonitrile-vinyl acetate) by activation of poly(methyl methacrylate) Rao MM, Liu JS, Li WS, Liang Y, Liao YH, Zhao LZ |
716 - 720 |
Polyvinylidene fluoride membrane by novel electrospinning system for separator of Li-ion batteries Yang CR, Jia ZD, Guan ZC, Wang LM |
721 - 725 |
Electrochemical performance and capacity fading reason of LiMn2O4/graphite batteries stored at room temperature Liu YJ, Li XH, Guo HJ, Wang ZX, Hu QY, Peng WJ, Yang Y |
726 - 729 |
Three-dimensionally ordered macroporous Ni-Sn anode for lithium batteries Nishikawa K, Dokko K, Kinoshita K, Woo SW, Kanamura K |
730 - 732 |
Preparation and electrochemical performance of Sn-Co-C composite as anode material for Li-ion batteries Chen ZX, Qian JF, Ai XP, Cao YH, Yang HX |
733 - 737 |
Electrochemical behaviors of Si/C composite synthesized from F-containing precursors Liu Y, Wen ZY, Wang XY, Hirano A, Imanishi N, Takeda Y |
738 - 742 |
Surface-modified Si thin film electrode for Li ion batteries (LiFePO4/Si) by cluster-structured Ni under layer Cho GB, Song MG, Bae SH, Kim JK, Choi YJ, Ahn HJ, Ahn JH, Cho KK, Kim KW |
743 - 747 |
Surface modification of LiCo1/3Ni1/3Mn1/3O2 with Y2O3 for lithium-ion battery Wu F, Wang M, Su YF, Chen S |
748 - 751 |
Lithium metal phosphates, power and automotive applications Huang H, Faulkner T, Barker J, Saidi MY |
752 - 756 |
Effects of Co doping on Li[Ni0.5CoxMn1.5-x]O-4 spinel materials for 5 V lithium secondary batteries via Co-precipitation Oh SW, Myung ST, Kang HB, Sun YK |
757 - 760 |
2-Phenylimidazole as an additive to prevent the co-intercalation of propylene carbonate in organic electrolyte for lithium-ion batteries Wang B, Qu QT, Yang LC, Xia Q, Wu YP, Zhou DL, Gu XJ, van Ree T |
761 - 765 |
Highly reversible carbon-nano-silicon composite anodes for lithium rechargeable batteries Si Q, Hanai K, Imanishi N, Kubo M, Hirano A, Takeda Y, Yamamoto O |
766 - 770 |
Effect of an inorganic additive on the cycling performances of lithium-ion polymer cells assembled with polymer-coated separators Eo SM, Cha E, Kim DW |
771 - 774 |
A polytriphenylamine-modified separator with reversible overcharge protection for 3.6 V-class lithium-ion battery Li SL, Ai XP, Yang HX, Cao YL |
775 - 778 |
All-solid-state polymer electrolyte with plastic crystal materials for rechargeable lithium-ion battery Fan LZ, Wang XL, Long F |
779 - 782 |
The cycling performance of LiFePO4/C cathode materials Zhi XK, Liang GC, Wang L, Ou XQ, Zhang JP, Cui JY |
783 - 785 |
High rate discharge capability of single particle electrode of LiCoO2 Dokko K, Nakata N, Kanamura K |
786 - 789 |
LiVOPO4: A cathode material for 4 V lithium ion batteries Ren MM, Zhou Z, Su LW, Gao XP |
790 - 793 |
Structure studies on LiMn0.25Fe0.75PO4 by in-situ synchrotron X-ray diffraction analysis Chen YC, Chen JM, Hsu CH, Yeh JW, Shih HC, Chang YS, Sheu HS |
794 - 797 |
Preparation and characterization of mesoporous LiFePO4/C microsphere by spray drying assisted template method Yu F, Zhang JJ, Yang YF, Song GZ |
798 - 801 |
First-principles study on lithium removal from Li2MnO3 Koyama Y, Tanaka I, Nagao M, Kanno R |
802 - 805 |
Ionic liquid electrolyte systems based on bis(fluorosulfonyl)imide for lithium-ion batteries Sugimoto T, Atsumi Y, Kikuta M, Ishiko E, Kono M, Ishikawa M |
806 - 808 |
Atomic-scale characterization of tin-based intermetallic anodes Naille S, Dedryvere R, Zitoun D, Lippens PE |
809 - 813 |
Effect of the cross-linking agent on cycling performances of lithium-ion polymer cells assembled by in situ chemical cross-linking with tris(2-(acryloyloxy)ethyl) phosphate Choi JA, Kang Y, Shim H, Kim DW, Song HK, Kim DW |
814 - 817 |
Sn-119 Mossbauer parameters as predictive tool for future Sn-based negative electrode materials Naille S, Jumas JC, Lippens PE, Olivier-Fourcade J |
818 - 822 |
Tin dispersed in an oxide matrix as negative electrode material for Li-ion batteries Mouyane M, Aldon L, Womes M, Ducourant B, Jumas JC, Olivier-Fourcade J |
823 - 827 |
On the use of transition metal oxysalts as conversion electrodes in lithium-ion batteries Aragon MJ, Leon B, Vicente CP, Tirado JL |
828 - 831 |
Synthesis and performance of Zn2SnO4 as anode materials for lithium ion batteries by hydrothermal method Zhu XJ, Geng LM, Zhang FQ, Liu YX, Cheng LB |
832 - 836 |
Electrochemical performance of Si-CeMg12 composites as anode materials for Li-ion batteries Lu ZW, Wang G, Gao XP, Liu XJ, Wang JQ |
837 - 840 |
Thermal and electrochemical behavior of yttria-stabilized zirconia coated LiCoO2 during overcharge tests Fey GTK, Hsiao CL, Muralidharan P |
841 - 846 |
Modeling for the scale-up of a lithium-ion polymer battery Kim US, Shin CB, Kim CS |
847 - 854 |
Deterioration estimation of lithium-ion cells in direct current power supply systems and characteristics of 400-Ah lithium-ion cells Matsushima T |
855 - 858 |
Thermal analysis of LixCoO2 cathode material of lithium ion battery Veluchamy A, Doh CH, Kim DH, Lee JH, Shin HM, Jin BS, Kim HS, Moon SI |
859 - 863 |
Development of lithium-ion battery for fuel cell hybrid electric vehicle application Kojima T, Ishizu T, Horiba T, Yoshikawa M |
864 - 868 |
The electrochemical properties of copper sulfide as cathode material for rechargeable sodium cell at room temperature Kim JS, Kim DY, Cho GB, Nam TH, Kim KW, Ryu HS, Ahn JH, Ahn HJ |
869 - 874 |
Tailoring nanostructured TiO2 for high power Li-ion batteries Erjavec B, Dominko R, Umek P, Sturm S, Pintar A, Gaberscek M |