349 - 349 |
Selected papers presented at the 11th International Meeting on Lithium Batteries, Biarritz, France - Preface Delmas C |
350 - 351 |
Jurgen O. Besenhard (1944-2006) - Obituary Winter M |
352 - 358 |
Analysis of SEI formed with cyano-containing imidazolium-based ionic liquid electrolyte in lithium secondary batteries Zhao L, Yamaki JI, Egashira M |
359 - 365 |
Effect of Bi oxide surface treatment on 5 V spinel LiNi0.5Mn1.5-xTixO4 Noguchi T, Yamazaki I, Numata T, Shirakata M |
366 - 372 |
A roadmap to understand battery performance in electric and hybrid vehicle operation Dubarry M, Svoboda V, Hwu R, Liaw BY |
373 - 379 |
Low-temperature study of lithium-ion cells using a LiySn micro-reference electrode Jansen AN, Dees DW, Abraham DP, Amine K, Henriksen GL |
380 - 386 |
Investigation of positive electrodes after cycle testing of high-power Li-ion battery cells I. An approach to the power fading mechanism using XANES Kobayashi H, Shikano M, Koike S, Sakaebe H, Tatsunii K |
387 - 393 |
Isocyanate compounds as electrolyte additives for lithium-ion batteries Korepp C, Kern W, Lanzer EA, Raimann PR, Besenhard JO, Yang MH, Moller KC, Shieh DT, Winter M |
394 - 399 |
Fabrication of LiCoO2 cathode powder for thin film battery by aerosol flame deposition Lee T, Cho K, Oh J, Shin D |
400 - 407 |
On the electrochemical and thermal behavior of lithium bis(oxalato)borate (LiBOB) solutions Larush-Asraf L, Biton A, Teller H, Zinigrad E, Aurbach D |
408 - 413 |
High energy lithium batteries by molecular wiring and targeting approaches Wang Q, Evans N, Zakeeruddin SM, Pechy P, Exnar I, Graetzel M |
414 - 420 |
Microstructural characterisation of battery materials using powder diffraction data: DIFFaX, FAULTS and SH-FullProf approaches Casas-Cabanas M, Roddguez-Carvajal J, Canales-Vazquez J, Laligant Y, Lacorre P, Palacin MR |
421 - 427 |
Structural evolution of ramsdellite-type LixTi2O4 upon electrochemical lithium insertion-deinsertion (0 <= x <= 2) Kuhn A, Baehtz C, Garcia-Alvarado F |
428 - 434 |
Sn-Co compound for Li-ion battery made via advanced electrospraying Valvo M, Lafont U, Simonin L, Kelder EM |
435 - 441 |
Electrochemical study on Mn2+-substitution in LiFePO4 olivine compound Nakamura T, Sakumoto K, Okamoto M, Seki S, Kobayashi Y, Takeuchi T, Tabuchi M, Yamada Y |
442 - 448 |
Hydrothermal synthesis of cathode materials Chen J, Wang S, Whittingham MS |
449 - 456 |
An overview of positive-electrode materials for advanced lithium-ion batteries Ohzuku T, Brodd RJ |
457 - 461 |
Li2MnSiO4 as a potential Li-battery cathode material Dominko R, Bele M, Kokalj A, Gaberscek M, Jamnik J |
462 - 468 |
Surface film formation on electrodes in a LiCoO2/graphite cell: A step by step XPS study Dedryvere R, Martinez H, Leroy S, Lemordant D, Bonhomme F, Biensan P, Gonbeau D |
469 - 472 |
Structural modifications caused by electrochemical lithium extraction for two types of layered LiVO2 (R(3)over-barm) Ozawa K, Nakao Y, Wang L, Cheng Z, Fujii H, Hase M, Eguchi M |
473 - 479 |
Synthesis and electrochemical properties of lithium non-stoichiometric Li1+x(Ni1/3Co1/3Mn1/3)O2+delta prepared by a spray drying method Kim JM, Kumagai N, Kadoma Y, Yashiro H |
480 - 483 |
Performances and thermal stability of LiCoO2 cathodes encapsulated by a new gel polymer electrolyte Lee SY, Kim SK, Ahn S |
484 - 492 |
Effects of anode active materials to the storage-capacity fading on commercial lithium-ion batteries Kwak G, Park J, Lee J, Kim SA, Jung I |
493 - 500 |
Effect of carbonaceous materials on electrochemical properties of nano-sized Fe2O3-loaded carbon as a lithium battery negative electrode Hang BT, Doi T, Okada S, Yamaki JI |
501 - 507 |
FePO4 nanoparticles supported on mesoporous SBA-15: Interesting cathode materials for Li-ion cells Gerbaldi C, Meligrana G, Bodoardo S, Tuel A, Penazzi N |
508 - 514 |
Composite cathode structure/property relationships Babinec S, Tang H, Talik A, Hughes S, Meyers G |
515 - 518 |
Synthesis and electrochemical characterization of 5 VLiNi1/2Mn3/2O4 cathode materials by low-heating solid-state reaction Li T, Qiu WH, Zhang GH, Zhao HL, Liu JJ |
519 - 523 |
Comparative analysis of the changes in local Ni/Mn environment in lithium-nickel-manganese oxides with layered and spinel structure during electrochemical extraction and reinsertion of lithium Zhecheva E, Stoyanova R, Alcantara R, Lavela P, Tirado JL |
524 - 527 |
Synthesis and electrochemical performance of Li2CoSiO4 as cathode material for lithium ion batteries Gong ZL, Li YX, Yang Y |
528 - 532 |
Synthesis and characterization of Li2MnSiO4/C nanocomposite cathode material for lithium ion batteries Li YX, Gong ZL, Yang Y |
533 - 537 |
Amorphous Si film anode coupled with LiCoO2 cathode in Li-ion cell Yang HB, Fu PP, Zhang HF, Song YJ, Zhou ZX, Wu MT, Huang LH, Xu G |
538 - 543 |
Effect of vinylene carbonate (VC) as electrolyte additive on electrochemical performance of Si film anode for lithium ion batteries Chen LB, Wang K, Xie XH, Xie JY |
544 - 547 |
Preparation and electrochemical properties of Li[Ni1/3Co1/3Mn1-x/3Zrx/3]O-2 cathode materials for Li-ion batteries Lin B, Wen ZY, Gu ZH, Xu XX |
548 - 551 |
Synthesis and electrochemical properties of LiY0.1V3O8 Feng CQ, Huang LF, Guo ZP, Wang JZ, Liu HK |
552 - 553 |
Sol-gel synthesis and controlled sintering of silver vanadium oxide Takeuchi ES, Marschilok AC, Leising RA, Takeuchi KJ |
554 - 559 |
Material design concept for Fe-substituted Li2MnO3-based positive electrodes Tabuchi M, Nabeshima Y, Ado K, Shikano M, Kageyama H, Tatsumi K |
560 - 564 |
Functionalized imidazolium ionic liquids as electrolyte components of lithium batteries Egashira M, Todo H, Yoshimoto N, Morita M, Yamaki J |
565 - 568 |
Synthesis and electrochemical properties of Li[Ni0.45Co0.1Mn0.45-xZrx]O-2 (x=0, 0.02) via co-precipitation method Bang HJ, Park BC, Prakash J, Sun YK |
569 - 574 |
Size effects on mass transport and storage in lithium batteries Maier J |
575 - 578 |
Screening Li-ion batteries for internal shorts Darcy E |
579 - 583 |
Effects of separator breakdown on abuse response of 18650 Li-ion cells Roth EP, Doughty DH, Pile DL |
584 - 587 |
Synthesis and characterization of doped Li[Mn0.5-x/2Ni0.5-x/2COx]O-2 positive electrode materials Reim J, Rentsch H, Scheifele W, Novak P |
588 - 591 |
Electrochemical properties of Ni-based inert phases incorporated Si/graphite composite anode Kim H, Im D, Doo SG |
592 - 597 |
A study on insertion/removal kinetics of lithium ion in LiCrxMn2-xO4 by using powder microelectrode Zeng RH, Li WS, Lu DS, Huang QM |
598 - 602 |
Fine cathode particles prepared by solid-state reaction method using nano-sized precursor particles Ju SH, Koo HY, Hong SK, Jo EB, Kang YC |
603 - 606 |
New crosslinking agent as a Lewis acid for solid polymer electrolytes Lee JY, Ko DH, Lee YM, Seol WH, Park JK |
607 - 612 |
Towards creating reversible silicon-based composite anodes for lithium ion batteries Dimov N, Yoshio M |
613 - 618 |
An attempt to improve electrical conductivity of the pyrolysed carbon-LiMn2O4-ySy (0 <= y <= 0.5) composites Molenda M, Dziembaj R, Podstawka E, Proniewicz LM, Piwowarska Z |
619 - 623 |
In situ X-ray diffraction studies on the mechanism of capacity retention improvement by coating at the surface of LiCoO2 Chung KY, Yoon WS, McBreen J, Yang XQ, Oh SH, Shin HC, Il Cho W, Cho BW |
624 - 627 |
Nano-tin alloys dispersed in oxides for lithium storage materials Zheng Y, Yang J, Nuli YN, Wang JL |
628 - 631 |
Ethyl isocyanate - An electrolyte additive from the large family of isocyanates for PC-based electrolytes in lithium-ion batteries Korepp C, Kern W, Lanzer EA, Raimann PR, Besenhard JO, Yang M, Moller KC, Shieh DT, Winter M |
632 - 636 |
Nickel sulfides as a cathode for all-solid-state ceramic lithium batteries Matsumura T, Nakano K, Kanno R, Hirano A, Imanishi N, Takeda Y |
637 - 642 |
4-bromobenzyl isocyanate versus benzyl isocyanate - New film-forming electrolyte additives and overcharge protection additives for lithium ion batteries Korepp C, Kern W, Lanzer EA, Raimann PR, Besenhard JO, Yang M, Moller KC, Shieh DT, Winter M |
643 - 647 |
Application of a nitroxide radical as overcharge protection in rechargeable lithium batteries Taggougui M, Carre B, Willmann P, Lemordant D |
648 - 652 |
Electrode materials for ionic liquid-based supercapacitors Arbizzani C, Beninati S, Lazzari M, Soavi F, Mastragostino M |
653 - 657 |
Measurement of the diffusion rate of Li in silicon by the use of bipolar cells Yoshimura K, Suzuki J, Sekine K, Takamura T |
658 - 662 |
Electrochemical stability of core-shell structure electrode for high voltage cycling as positive electrode for lithium ion batteries Parka BC, Bang HJ, Amine K, Jung E, Sun YK |
663 - 667 |
Effect of mixed LiBOB and LiPF6 salts on electrochemical and thermal properties in LiMn2O4 batteries Shieh DT, Hsieh PH, Yang MH |
668 - 672 |
In situ measurement of lithium mass transfer during charging and discharging of a Ni-Sn alloy electrode Nishikawa K, Fukunaka Y, Sakka T, Ogata Y, Selman JR |
673 - 677 |
Thermal properties of Li4/3Ti5/3O4/LiMn2O4 cell Lu W, Belharouak I, Liu J, Amine K |
678 - 682 |
Mechanistic study on lithium intercalation using a restricted reaction field in LiNi0.5Mn0.5O2 Sakamoto K, Konishi H, Sonoyama N, Yamada A, Tamura K, Mizuki J, Kanno R |
683 - 688 |
Morphology and electrical properties of conductive carbon coatings for cathode materials Moskon J, Dominko R, Cerc-Korosec R, Gaberscek M, Jamnik J |
689 - 694 |
Electrical conductivity and reaction with lithium of LiFe1-yMnyPO4 olivine-type cathode materials Molenda J, Qjczyk W, Marzec J |
695 - 700 |
Interfacial lithium-ion transfer at the LiMn2O4 thin film electrode/aqueous solution interface Nakayama N, Nozawa T, Iriyama Y, Abe T, Ogumi Z, Kikuchi K |
701 - 704 |
Studies on the low-heating solid-state reaction method to synthesize LiNi1/3Co1/3Mn1/3O2 cathode materials Liu JJ, Qiu WH, Yu LY, Zhang GH, Zhao HL, Li T |
705 - 710 |
Performance improvement of lithium ion battery using PC as a solvent component and BS as an SEI forming additive Xu MQ, Li WS, Zuo XX, Liu JS, Xu X |
711 - 715 |
Magnetism and lithium diffusion in LixCoO2 by a muon-spin rotation and relaxation (mu+SR) technique Mukai K, Sugiyama J, Ikedo Y, Nozaki H, Shimomura K, Nishiyama K, Ariyoshi K, Ohzuku T |
716 - 719 |
Relationships between processing, morphology and discharge capacity of the composite electrode Ligneel E, Lestriez B, Guyomard D |
720 - 725 |
Effects of fluorine-substitution on the electrochemical behavior of LiFePO4/C cathode materials Liao XZ, He YS, Ma ZF, Zhang XM, Wang L |
726 - 729 |
Synthesis and electrochemical properties of spherical spinel Li1.05M0.05Mn1.9O4 (M = Mg and Al) as a cathode material for lithium-ion batteries by co-precipitation method Lee KS, Bang HJ, Myung ST, Prakash J, Amine K, Sun YK |
730 - 734 |
Synthesis and electrochemical Properties of Li1-xFe0.8Ni0.2O2-LixMnO2 (Mn/(Fe+Ni+Mn)=0.8) material Park GJ, Lee YS, Kim J, Nahm KS, Sato Y |
735 - 740 |
Mixed layered Ni-Mn-Co hydroxides: Crystal structure, electronic state of ions, and thermal decomposition Kosova N, Devyatkina E, Kaichev V |
741 - 744 |
Development of all-solid lithium-ion battery using Li-ion conducting glass-ceramics Inda Y, Katoh T, Baba M |
745 - 750 |
Electrochemical properties of lithium sulfur cells using PEO polymer electrolytes prepared under three different mixing conditions Jeong SS, Lim Y, Choi YJ, Cho GB, Kim KW, Ahn HJ, Cho KK |
751 - 755 |
Impedance analysis of PLD LiNi0.8Co0.2O2 film electrode Imanishi N, Shizuka K, Matsumura T, Hirano A, Takeda Y, Kanno R |
756 - 760 |
Crystallization of LiMn2O4 observed with high temperature X-ray diffraction Ogata A, Shimizu T, Komaba S |
761 - 765 |
In-situ XRD investigations on structure changes of ZrO2-coated LiMn0.5Ni0.5O2 cathode materials during charge Hwang BJ, Hu SK, Chen CH, Chen CY, Sheu HS |
766 - 769 |
Improved electrochemical performance of modified natural graphite anode for lithium secondary batteries Zhang WH, Fang L, Yue M, Yu ZL |
770 - 773 |
Nanosized tin anode prepared by laser-induced vapor deposition for lithium ion battery Zhang T, Fu LJ, Gao J, Wu YP, Holze R, Wu HQ |
774 - 778 |
Investigation of inorganic compounds on the surface of cathode materials using Li and OK-edge XANES Kobayashi H, Emura S, Arachi Y, Tatsumi K |
779 - 783 |
Computer simulation of a porous positive electrode for lithium batteries Doi T, Fukudome H, Okada S, Yamaki JI |
784 - 788 |
Gamma-crotonlatone as an electrolyte additive for improving the cyclability of MCMB electrode Me X, Chen L, Sun W, Xie J |
789 - 794 |
Preparation of alpha-LiFeO2-based cathode materials by an ionic exchange method Wu SH, Liu HY |
795 - 799 |
Investigation of positive electrodes after cycle testing of high-power Li-ion battery cells II - An approach to the power fading mechanism using hard X-ray photoemission spectroscopy Shikano A, Kobayashi H, Koike S, Sakaebe H, Ikenaga E, Kobayashi K, Tatsumi K |
800 - 804 |
Structural and electrochemical characterization of tin-containing graphite compounds used as anodes for Li-ion batteries Trifonova A, Winter M, Besenhard JO |
805 - 809 |
Sb/O nano-composites produced via Spark Discharge Generation for Li-ion battery anodes Simonin L, Lafont U, Tabrizi N, Schmidt-Ott A, Kelder EM |
810 - 812 |
Solid solution lithium alloy cermet anodes Richardson TJ, Chen G |
813 - 817 |
An application of lithium cobalt nickel manganese oxide to high-power and high-energy density lithium-ion batteries Yoshizawa H, Ohzuku T |
818 - 822 |
Behaviour of LiNi0.8Co0.2O2-cathodes at high cycle numbers Nikolowski K, Bramnik NN, Baehtz C, Ehrenberg H, Fuess H |
823 - 827 |
Spray-pyrolyzed silicon/disordered carbon nanocomposites for lithium-ion battery anodes Ng SH, Wang J, Konstantinov K, Wexler D, Chew SY, Guo Z, Liu HK |
828 - 831 |
Synthesis and electrochemical performance of doped LiCoO2 materials Needham SA, Wang GX, Liu HK, Drozd VA, Liu RS |
832 - 837 |
All solid battery with phosphate compounds made through sintering process Nagata K, Nanno T |
838 - 842 |
Charge-discharge characteristics of all-solid-state thin-filmed lithium-ion batteries using amorphous Nb2O5 negative electrodes Nakazawa H, Sano K, Abe T, Baba M, Kumagai N |
843 - 846 |
Microscopic magnetism in lithium insertion materials of LiNi1-xCoxO2 (x=0, 1/4, 1/2, 3/4, and 1) Mukai K, Sugiyama J, Ikedo Y, Brewer JH, Ansaldo EJ, Morris GD, Ariyoshi K, Ohzuku T |
847 - 851 |
Mg-doped LiNi0.5Mn1.5O4 spinel for cathode materials Locati C, Lafont U, Simonin L, Ooms F, Kelder EM |
852 - 855 |
Effect of electrolyte additives in improving the cycle and calendar life of graphite/Li-1.1[Ni1/3Co1/3Mn1/3](0.9)O-2 Li-ion cells Liu J, Chen Z, Busking S, Belharouak I, Amine K |
856 - 860 |
Development of a universal modeling tool for rechargeable lithium batteries Dubarry M, Liaw BY |
861 - 866 |
Relation between composition of the positive electrode and cell performance and safety of lithium-ion PTC batteries Kise M, Yoshioka S, Kuriki H |
867 - 871 |
Electrochemical and structural studies of the carbon-coated Li[CrxLi(1/3-x/3)Ti(2/3-2x/3)]O-2 (x=0.3, 0.35, 0.4, 0.45) Mi X, Li H, Huang X |
872 - 876 |
Modeling lithium/hybrid-cathode batteries Gomadam PM, Merritt DR, Scott ER, Schmidt CL, Skarstad PM, Weidner JW |
877 - 882 |
Investigation of positive electrodes after cycle testing of high-power Li-ion battery cells IV - An approach to the power fading mechanism by depth profile analysis of electrodes using glow discharge optical emission spectroscopy Saito Y, Rahman MK |
883 - 888 |
Investigation of Li salt doped succinonitrile as potential solid electrolytes for lithium batteries Abouimrane A, Whitfield PS, Niketic S, Davidson IJ |
889 - 894 |
Investigation of positive electrodes after cycle testing of high-power Li-ion battery cells - III: An approach to the power fade mechanism using FT-IR-ATR Rahman MK, Saito Y |
895 - 899 |
Surface and bulk structure investigation of fully delithiated bare and AIPO(4)-coated LixCoO2 (x=0) cathode materials annealed between 200 and 400 degrees C Kim Y, Kim MG, Yoon CS, Lee Y, Cho J |
900 - 904 |
Silicon/graphite nanocomposite electrodes prepared by low pressure chemical vapor deposition Alias M, Crosnier O, Sandu I, Jestin G, Papadimopoulos A, Le Cras F, Schleich DM, Brousse T |
905 - 909 |
Thermal behavior of delithiated Li(Ni0.8Co0.15Al0.05)O-2 and Li-1.1(Ni1/3Co1/3Mn1/3)(0.9)O-2 powders Belharouak I, Lu WQ, Liu J, Vissers D, Amine K |
910 - 915 |
Search for new manganese-cobalt oxides as positive electrode materials for lithium batteries Strobel P, Tillier J, Diaz A, Ibarra-Palos A, Thiery F, Soupart JB |
916 - 920 |
Studies of the electrochemical performance of Sn-Sb alloy prepared by solid-state reduction Zhao HL, Yin CL, Guo H, He HC, Qiu WH, Li Y |
921 - 926 |
A novel SnxSbNi composite as anode materials for Li rechargeable batteries Guo H, Zhao HL, Ha X, He HC, Qiu WH, Li X |
927 - 931 |
The effect of Al substitution on the lithium insertion properties of lithium vanadium fluorophosphate, LiVPO4F Barker J, Saidi MY, Gover RKB, Burns P, Bryan A |
932 - 937 |
Synthesis of hollandite-type LiyMn1-xCoxO2 (x=0-0.15) by Li+ ion-exchange in molten salt and the electrochemical property for rechargeable lithium battery electrodes Kumagai N, Oshitari S, Komaba S, Kadoma Y |
938 - 943 |
Soft X-ray absorption spectroscopy studies on the chemically delithiated commercial LiCoO(2)cathode material Chen CH, Hwang BJ, Chen CY, Hu SK, Chen JM, Sheu HS, Lee JF |
944 - 948 |
The meaning of impedance measurements of LiFePO4 cathodes: A linearity study Gaberscek M, Dominko R, Jamnik J |
949 - 953 |
Effect of particle size on LiMnPO4 cathodes Drezen T, Kwon NH, Bowen P, Teerlinck I, Isono M, Exnar I |
954 - 958 |
Life prediction and reliability assessment of lithium secondary batteries Eom SW, Kim MK, Kim IJ, Moon SI, Sun YK, Kim HS |
959 - 964 |
Comparative study of LiCoO2 surface modified with different oxides Kosova NV, Devyatkina ET |
965 - 969 |
Optimization of Ni2+/Ni3+ ratio in layered Li(Ni,Mn,Co)O-2 cathodes for better electrochemistry Kosova NV, Devyatkina ET, Kaichev VV |
970 - 975 |
How dynamic is the SEI? Bryngelsson H, Stjerndahl M, Gustafsson T, Edstrom K |
976 - 980 |
Preparation and performances of highly porous layered LiCoO(2)films for lithium batteries Koike S, Tatsumi K |
981 - 984 |
Development of high-power density Li ion cell and module Horiba T |
985 - 989 |
Synthesis of Li1.1Ni1/3Co1/3Mn1/3O2 cathode material using spray-microwave method Chang HY, Sheu CL, Cheng SY, Wu HC, Guo ZZ |
990 - 995 |
Preparation of positive LiCoO2 films by electron cyclotron resonance (ECR) plasma sputtering method and its application to all-solid-state thin-film lithium batteries Hayashi M, Takahashi M, Sakurai Y |
996 - 1000 |
Cathode materials: A personal perspective Goodenough JB |
1001 - 1006 |
Theoretical examination of reference electrodes for lithium-ion cells Dees DW, Jansen AN, Abraham DP |
1007 - 1011 |
Synthesis and electrochemistry of new layered (1-x) LiVO2 center dot xLi(2)TiO(3) (0 <= x <= 0.6) electrode materials Zhang LQ, Takada K, Ohta N, Osada M, Sasaki T |
1012 - 1014 |
Kinetic study on solid state reaction for synthesis of LiBOB Yu BT, Qiu WH, Li FS, Li LF |
1015 - 1020 |
Electronic structural changes of the electrochemically Li-ion deintercalated LiNi0.8Co0.15Al0.05O2 cathode material investigated by X-ray absorption spectroscopy Yoon WS, Chung KY, McBreen J, Fischer DA, Yang XQ |
1021 - 1026 |
Application of nonflammable electrolyte with room temperature ionic liquids (RTILs) for lithium-ion cells Nakagawa H, Fujino Y, Kozono S, Katayama Y, Nukuda T, Sakaebe H, Matsumoto H, Tatsumi K |
1027 - 1031 |
In situ micro-FTIR study of the solid-solid interface between lithium electrode and polymer electrolytes Cheng H, Zhu CB, Lu M, Yang Y |
1032 - 1035 |
Synthesis and electrochemical properties of V2O5 nanostructures prepared via a precipitation process for lithium-ion battery cathodes Ng SH, Chew SY, Wang J, Wexler D, Tournayre Y, Konstantinov K, Liu HK |
1036 - 1040 |
4.4 V lithium-ion polymer batteries with a chemical stable gel electrolyte Yamamoto T, Hara T, Segawa K, Honda K, Akashi H |
1041 - 1045 |
Composite anode materials for Li-ion batteries Wen ZY, Yang XF, Huang SH |
1046 - 1051 |
Diagnostic evaluation of detrimental phenomena in C-13-labeled composite cathodes for Li-ion batteries Kerlau M, Marcinek M, Kostecki R |
1052 - 1056 |
Studies of layered lithium metal oxide anodes in lithium cells Vaughey JT, Geyer AM, Fackler N, Johnson CS, Edstrom K, Bryngelsson H, Benedek R, Thackeray MM |
1057 - 1062 |
Preparation of lithium manganese oxide fine particles by spray pyrolysis and their electrochemical properties Iriyama Y, Tachibana Y, Sasasoka R, Kuwata N, Abe T, Inaba M, Tasaka A, Kikuchi K, Kawamura J, Ogumi Z |
1063 - 1068 |
Improvement of rate capability in rechargeable lithium-ion batteries using oxide-based active materials-carbon composite cathodes Takeuchi T, Tabuchi M, Ado K, Tatsumi K |
1069 - 1073 |
2,5-difluoro-1,4-dimethoxybenzene for overcharge protection of secondary lithium batteries Taggougui M, Carre B, Willmann P, Lemordant D |
1074 - 1077 |
Relationship between physical properties and electrochemical performances for Li1+yNixCo1-2xMnxO2 positive active materials Shizuka K, Takano S, Okahara K |
1078 - 1081 |
Variable oxygen stoichiometry in layered rock salt cathodes, Li-x(Mn,Ni)O-2, depending on synthesis conditions Pasero D, Reeves N, Gillie LJ, West AR |
1082 - 1085 |
The importance of the active surface area of graphite materials in the first lithium intercalation Novak P, Ufheil J, Buqa H, Krumeich F, Spahr ME, Goers D, Wilhelm H, Dentzer J, Gadiou R, Vix-Guterl C |
1086 - 1090 |
XPS study of electrode/electrolyte interfaces of eta-Cu6Sn5 electrodes in Li-ion batteries Naille S, Dedryvere R, Martinez H, Leroy S, Lippens PE, Jumas JC, Gonbeau D |
1091 - 1094 |
Sn-based intermetallic materials performances and mechanisms Naille S, Ionica-Bousquet CM, Robert F, Morato F, Lippens PE, Olivier-Fourcade J |
1095 - 1099 |
An investigation of polypyrrole-LiV3O8 composite cathode materials for lithium-ion batteries Feng CQ, Chew SY, Guo ZP, Wang JZ, Liu HK |
1100 - 1103 |
Preparation of LiMn2O4 thin-film electrode on Li1+xAlxTi2-x(PO4)(3) NASICON-type solid electrolyte Dokko K, Hoshina K, Nakano H, Kanamura K |
1104 - 1108 |
Carbon coating via an alkyl phosphonic acid grafting route: Application on TiO2 Lafont U, Simonin L, Gaberscek M, Kelder EM |
1109 - 1112 |
Preparation and characteristic of carbon-coated Li4Ti5O12 anode material Wang GJ, Gao J, Fu LJ, Zhao NH, Wu YP, Takamura T |
1113 - 1116 |
LiNi0.5Mn1.5O3.975F0.05 as novel 5 V cathode material Xu XX, Yang J, Wang YQ, Nuli YN, Wang JL |
1117 - 1120 |
Cyclic voltammetry of LiCr0.15Mn1.85O4 in an aqueous LiNO3 solution Cvjeticanin N, Stojkovic I, Mitric M, Mentus S |
1121 - 1125 |
Capacity loss in rechargeable lithium cells during cycle life testing: The importance of determining state-of-charge Dubarry M, Svoboda V, Hwu R, Liaw BY |
1126 - 1130 |
A mixture of LiNi1/3Co1/3Mn1/3O2 and LiCoO2 as positive active material of LIB for power application Liu XJ, Zhu GY, Yang K, Wang JQ |
1131 - 1136 |
Effects of Mg-substitution in Li(Ni,Co,Al)O-2 positive electrode materials on the crystal structure and battery performance Kondo H, Takeuchi Y, Sasaki T, Kawauchi S, Itou Y, Hiruta O, Okuda C, Yonemura M, Kamiyama T, Ukyo Y |
1137 - 1141 |
Chemically oxidized manganese dioxides for lithium secondary batteries Il Jung W, Sakamoto K, Pitteloud C, Sonoyama N, Yamada A, Kanno R |
1142 - 1146 |
Electrochemical performance and Li-7 NMR studies on an inverse spinel LiNi1/3Co1/3Mn1/3VO4 for Li-ion batteries Fey GTK, Muralidharan P, Cho YD, Chang PC, Kao HM |
1147 - 1151 |
Improved electrochemical performance of LiCoO2 surface treated with Li4Ti5O12 Fey GTK, Huang CF, Muralidharan P, Chang ESS |
1152 - 1155 |
Electrochemical studies on surface coated LiCoVO4 with Al2O3 derived from carboxylate-alumoxane for lithium-ion cells Fey GTK, Muralidharan P, Cho YD |
1156 - 1160 |
Oxygen, hydrogen, ethylene and CO2 development in lithium-ion batteries Holzapfel M, Wursig A, Scheifele W, Vetter J, Novak P |
1161 - 1166 |
Fine cathode particles prepared by solid-state reaction method using nano-sized precursor particles Ju SH, Kang YC |
1167 - 1171 |
Properties of the cross-linked composite polymer electrolytes using hyperbranched polymer with terminal acryloyl groups Itoh T, Gotoh S, Uno T, Kubo M |
1172 - 1176 |
Alkali hexatitanates - A(2)Ti(6)O(13) (A = Na, K) as host structure for reversible lithium insertion Dominko R, Dupont L, Gaberscek M, Jamnik J, Baudrin E |
1177 - 1182 |
An O-2 cathode for rechargeable lithium batteries: The effect of a catalyst Debart A, Bao J, Armstrong G, Bruce PG |
1183 - 1187 |
Synthesis and characterization of SnO2-polypyrrole composite for lithium-ion battery Yuan L, Wang J, Chew SY, Chen J, Guo ZP, Zhao L, Konstantinov K, Liu HK |
1188 - 1192 |
New structural approach of lithium intercalation using Raman spectroscopy Baddour-Hadjean R, Pereira-Ramos JP |
1193 - 1196 |
Plastic crystalline phases of crown ether: salt complexes and their utilization in lithium-metal batteries Abouimrane A, Alarco PJ, Abu-Lebdeh Y, Davidson I, Armand M |
1197 - 1200 |
Preparation of Cu2O particles with different morphologies and their application in lithium ion batteries Fu L, Gao J, Zhang T, Cao Q, Yang LC, Wu YP, Holze R, Wu HQ |
1201 - 1205 |
Macroporous Li(Ni1/3Co1/3Mn1/3)O-2: A high-rate positive electrode for rechargeable lithium batteries Shaju KM, Bruce PG |
1206 - 1211 |
Influence of acids in the Ppy/V2O5 hybrid synthesis and performance as a cathode material Boyano I, Bengoechea M, de Meatza I, Miguel O, Cantero I, Ochoteco E, Grande H, Lira-Cantu M, Gomez-Romero P |
1212 - 1217 |
Nanosized LiMyMn2-yO4 (M = Cr, Co and Ni) spinels synthesized by a sucrose-aided combustion method - Structural characterization and electrochemical properties Amarilla JM, Rojas RM, Pico F, Pascual L, Petrov K, Kovacheva D, Lazarraga MG, Lejona I, Rojo JM |
1218 - 1223 |
Structural and electrochemical properties of Li0.44+xMn1-yTiyO2 as a novel 4 V positive electrode material Awaka J, Akimoto J, Hayakawa H, Takahashi Y, Kijima N, Tabuchi M, Sakaebe H, Tatsumi K |
1224 - 1228 |
New Sn-based composites as anode materials for Li-ion batteries Aboulaich A, Mouyane M, Robert F, Lippens PE, Olivier-Fourcade J, Willmann P, Jumas JC |
1229 - 1233 |
Preparation and examination of carbon- and binder-free electrodes used in lithium-ion cells Kang SH, Abraham DP |
1234 - 1240 |
Progress in nonaqueous magnesium electrochemistry Amir N, Vestfrid Y, Chusid O, Gofer Y, Aurbach D |
1241 - 1250 |
More on the performance of LiFePO4 electrodes - The effect of synthesis route, solution composition, aging, and temperature Koltypin M, Aurbach D, Nazar L, Ellis B |
1251 - 1257 |
A computational investigation on fluorinated-polyanionic compounds as positive electrode for lithium batteries de Dompablo MEAY, Amador U, Tarascon JM |
1258 - 1262 |
Conceptual design for 12 V "lead-free" accumulators for automobile and stationary applications Ariyoshi K, Ohzuku T |
1263 - 1269 |
On the performance of graphitized meso carbon microbeads (MCMB)-meso carbon fibers (MCF) and synthetic graphite electrodes at elevated temperatures Markevich E, Pollak E, Salitra G, Aurbach D |
1270 - 1274 |
Metal-doped Li2Ti3O7 with ramsdellite structure as high voltage anode for new generation Li-ion batteries Van Thournout A, Aldon L, Womes A, Ducourant B, Olivier-Fourcade J, Tessier C, Levasseur S |
1275 - 1278 |
Electrochemical properties of sodium/pyrite battery at room temperature Kim TB, Choi JW, Ryu HS, Cho GB, Kim KW, Ahn JH, Cho KK, Ahn HJ |