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    1. Prosini, PP; Capiglia, C; Saito, Y; Fujieda, T; Vellone, R; Shikano, M; Sakai, T
      A new composite cathode for high-performance lithium-polymer batteries

      JOURNAL OF POWER SOURCES
    2. Licht, S; Naschitz, V; Liu, B; Ghosh, S; Halperin, N; Halperin, L; Rozen, D
      Chemical synthesis of battery grade super-iron barium and potassium Fe(VI)ferrate compounds

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    3. Palmqvist, U; Eriksson, L; Garcia-Garcia, J; Simic, N; Ahlberg, E; Sjovall, R
      On the misuse of the crystal structure model of the Ni electrode material

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    4. Kim, YS; Lee, KY; Chun, HS
      Creep characteristics of porous Ni/Ni3Al anodes for molten carbonate fuel cells

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    5. Kim, MK; Chung, HT; Park, YJ; Kim, JG; Son, JT; Park, KS; Kim, HG
      Fabrication of LiCoO2 thin films by sol-gel method and characterisation aspositive electrodes for Li/LiCoO2 cells

      JOURNAL OF POWER SOURCES
    6. Ramesh, S; Arof, AK
      Structural, thermal and electrochemical cell characteristics of poly(vinylchloride)-based polymer electrolytes

      JOURNAL OF POWER SOURCES
    7. Zhang, HB; Lei, YQ; Li, DH
      Electrochemical performance of ZrMn0.5V0.4Ni1.1Cox Laves phase alloy electrode

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    8. Nayoze, C; Ansart, F; Laberty, C; Sarrias, J; Rousset, A
      New synthesis method of LiM1-xMx ' O-2 elaborated by soft chemistry for rechargeable batteries (M and M ' = Ni, Co or Mn)

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    9. Yamane, H; Inoue, T; Fujita, M; Sano, M
      A causal study of the capacity fading of Li1.01Mn1.99O4 cathode at 80 degrees C, and the suppressing substances of its fading

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    10. Makino, K; Katayama, Y; Miura, T; Kishi, T
      Electrochemical insertion of magnesium to Mg0.5Ti2(PO4)(3)

      JOURNAL OF POWER SOURCES
    11. Sato, N
      Thermal behavior analysis of lithium-ion batteries for electric and hybridvehicles

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    12. Ying, JR; Wan, CR; Jiang, CY; Li, YX
      Preparation and characterization of high-density spherical LiNi0.8Co0.2O2 cathode material for lithium secondary batteries

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    13. Scrosati, B
      Special issue - Proceedings of the 10th International Meeting on Lithium Batteries - Como, Italy, 28 May-2 June 2000 - Preface

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    14. Tanaka, T; Ohta, K; Arai, N
      Year 2000 R&D status of large-scale lithium ion secondary batteries in thenational project of Japan

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    15. Thackeray, MM
      From gems to lithium battery electrodes: the significance of the diamond, ruby (sapphire), spinel and peridot structures

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    16. Broussely, M; Herreyre, S; Biensan, P; Kasztejna, P; Nechev, K; Staniewicz, RJ
      Aging mechanism in Li ion cells and calendar life predictions

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    17. Hamlen, R; Au, G; Brundage, M; Hendrickson, M; Plichta, E; Slane, S; Barbarello, J
      US Army portable power programs

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    18. Marsh, RA; Vukson, S; Surampudi, S; Ratnakumar, BV; Smart, MC; Manzo, M; Dalton, PJ
      Li ion batteries for aerospace applications

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    19. Aurbach, D; Gofer, Y; Lu, Z; Schechter, A; Chusid, O; Gizbar, H; Cohen, Y; Ashkenazi, V; Moshkovich, M; Turgeman, R; Levi, E
      A short review on the comparison between Li battery systems and rechargeable magnesium battery technology

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    20. Yazami, R
      From Rome to Como: 20 years of active research on carbon-based electrodes for lithium batteries at INP-Grenoble

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    21. Novak, P; Joho, F; Lanz, M; Rykart, B; Panitz, JC; Alliata, D; Kotz, R; Haas, O
      The complex electrochemistry of graphite electrodes in lithium-ion batteries

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    22. Fey, GTK; Chen, CL
      High-capacity carbons for lithium-ion batteries prepared from rice husk

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    23. Peled, E; Tow, DB; Merson, A; Gladkich, A; Burstein, L; Golodnitsky, D
      Composition, depth profiles and lateral distribution of materials in the SEI built on HOPG-TOF SIMS and XPS studies

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    24. Kong, F; Kostecki, R; Nadeau, G; Song, X; Zaghib, K; Kinoshita, K; McLarnon, F
      In situ studies of SEI formation

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    25. Gaberscek, M; Bele, M; Drofenik, J; Dominko, R; Pejovnik, S
      Improved carbon anode properties: pretreatment of particles in polyelectrolyte solution

      JOURNAL OF POWER SOURCES
    26. Kim, JS
      Charge/discharge characteristics of the coal-tar pitch carbon as negative electrode in Li-ion batteries

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    27. Ohzuku, T; Matoba, N; Sawai, K
      Direct evidence on anomalous expansion of graphite-negative electrodes on first charge by dilatometry

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    28. Joho, F; Rykart, B; Blome, A; Novak, P; Wilhelm, H; Spahr, ME
      Relation between surface properties, pore structure and first-cycle chargeloss of graphite as negative electrode in lithium-ion batteries

      JOURNAL OF POWER SOURCES
    29. Martinent, A; Le Gorrec, B; Montella, C; Yazami, R
      Three-electrode button cell for EIS investigation of graphite electrode

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    30. Edstrom, K; Andersson, AM; Bishop, A; Fransson, L; Lindgren, J; Hussenius, A
      Carbon electrode morphology and thermal stability of the passivation layer

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    31. Aurbach, D; Gnanaraj, JS; Levi, MD; Levi, EA; Fischer, JE; Claye, A
      On the correlation among surface chemistry, 3D structure, morphology, electrochemical and impedance behavior of various lithiated carbon electrodes

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    32. Zaghib, K; Nadeau, G; Kinoshita, K
      Influence of edge and basal plane sites on the electrochemical behavior offlake-like natural graphite for Li-ion batteries

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    33. Dolle, M; Grugeon, S; Beaudoin, B; Dupont, L; Tarascon, JM
      In situ TEM study of the interface carbon/electrolyte

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    34. Ota, H; Sato, T; Suzuki, H; Usami, T
      TPD-GC/MS analysis of the solid electrolyte interface (SEI) on a graphite anode in the propylene carbonate/ethylene sulfite electrolyte system for lithium batteries

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    35. Huang, H; Kelder, EM; Schoonman, J
      Graphite-metal oxide composites as anode for Li-ion batteries

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    36. Kumar, TP; Stephan, AM; Thayananth, P; Subramanian, V; Gopukumar, S; Renganathan, NG; Raghavan, M; Muniyandi, N
      Thermally oxidized graphites as anodes for lithium-ion cells

      JOURNAL OF POWER SOURCES
    37. Buqa, H; Golob, P; Winter, M; Besenhard, JO
      Modified carbons for improved anodes in lithium ion cells

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    38. Buqa, H; Grogger, C; Alvarez, MVS; Besenhard, JO; Winter, M
      Surface modification of graphite anodes by combination of high temperaturegas treatment and silylation in nonaqueous solution

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    39. Ishihara, T; Kawahara, A; Nishiguchi, H; Yoshio, M; Takita, Y
      Effects of synthesis condition of graphitic nanocabon tube on anodic property of Li-ion rechargeable battery

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    40. Lampe-Onnerud, C; Shi, J; Onnerud, P; Chamberlain, R; Barnett, B
      Benchmark study on high performing carbon anode materials

      JOURNAL OF POWER SOURCES
    41. Ratnakumar, BV; Smart, MC; Surampudi, S
      Effects of SEI on the kinetics of lithium intercalation

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    42. Frackowiak, E; Machnikowski, J; Kaczmarska, H; Beguin, F
      Boronated mesophase pitch coke for lithium insertion

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    43. Chevallier, F; Gautier, S; Salvetat, JP; Clinard, C; Frackowiak, E; Rouzaud, JN; Beguin, F
      Effects of post-treatments on the performance of hard carbons in lithium cells

      JOURNAL OF POWER SOURCES
    44. Zane, D; Antonini, A; Pasquali, M
      A morphological study of SEI film on graphite electrodes

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    45. Olivier, JP; Winter, M
      Determination of the absolute and relative extents of basal plane surface area and "non-basal plane surface" area of graphites and their impact on anode performance in lithium ion batteries

      JOURNAL OF POWER SOURCES
    46. Ogumi, Z; Sano, A; Inaba, M; Abe, T
      Pyrolysis/gas chromatography/mass spectroscopy analysis of the surface film formed on graphite negative electrode

      JOURNAL OF POWER SOURCES
    47. Yamaguchi, K; Suzuki, J; Saito, M; Sekine, K; Takamura, T
      Stable charge/discharge of Li at a graphitized carbon fiber electrode in apure PC electrolyte and the initial charging loss

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    48. Sato, Y; Tanuma, K; Takayama, T; Kobayakawa, K; Kawai, T; Yokoyama, A
      Li-7-nuclear magnetic resonance observations of lithium insertion into coke carbon modified with mesophase-pitch

      JOURNAL OF POWER SOURCES
    49. Blyth, RIR; Buqa, H; Netzer, FP; Ramsey, MG; Besenhard, JO; Winter, M
      X-ray photoemission studies of surface pre-treated graphite electrodes

      JOURNAL OF POWER SOURCES
    50. Panitz, JC; Novak, P
      Raman microscopy as a quality control tool for electrodes of lithium-ion batteries

      JOURNAL OF POWER SOURCES
    51. Fang, L; Chowdari, BVR
      Sn-Ca amorphous alloy as anode for lithium ion battery

      JOURNAL OF POWER SOURCES
    52. Hamon, Y; Brousse, T; Jousse, F; Topart, P; Buvat, P; Schleich, DM
      Aluminum negative electrode in lithium ion batteries

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    53. Crosnier, O; Devaux, X; Brousse, T; Fragnaud, P; Schleich, DM
      Influence of particle size and matrix in "metal" anodes for Li-ion cells

      JOURNAL OF POWER SOURCES
    54. Lee, SJ; Lee, JK; Chung, SH; Lee, HY; Lee, SM; Baik, HK
      Stress effect on cycle properties of the silicon thin-film anode

      JOURNAL OF POWER SOURCES
    55. Vaughey, JT; Johnson, CS; Kropf, AJ; Benedek, R; Thackeray, MM; Tostmann, H; Sarakonsri, T; Hackney, S; Fransson, L; Edstrom, K; Thomas, JO
      Structural and mechanistic features of intermetallic materials for lithiumbatteries

      JOURNAL OF POWER SOURCES
    56. Momma, T; Shiraishi, N; Yoshizawa, A; Osaka, T; Gedanken, A; Zhu, JJ; Sominski, L
      SnS2 anode for rechargeable lithium battery

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    57. Benedek, R; Vaughey, JT; Thackeray, MM; Yang, LH; Prasad, R
      First-principles calculations for Li insertion into InSb

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    58. Dedryvere, R; Denis, S; Lippens, PE; Olivier-Fourcade, J; Jumas, JC
      Phase separation and amorphisation in lithium inserted Cu-In-Sn sulfospinels: experimental and theoretical approach

      JOURNAL OF POWER SOURCES
    59. Sarradin, J; Benjelloun, N; Taillades, G; Ribes, M
      Tin/tin oxide thin film electrodes for lithium-ion batteries

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    60. Wang, GX; Ahn, JH; Lindsay, MJ; Sun, L; Bradhurst, DH; Dou, SX; Liu, HK
      Graphite-Tin composites as anode materials for lithium-ion batteries

      JOURNAL OF POWER SOURCES
    61. Yang, J; Takeda, Y; Imanishi, N; Xie, JY; Yamamoto, O
      Morphology modification and irreversibility compensation for SnO anodes

      JOURNAL OF POWER SOURCES
    62. Belliard, F; Irvine, JTS
      Electrochemical performance of ball-milled ZnO-SnO2 systems as anodes in lithium-ion battery

      JOURNAL OF POWER SOURCES
    63. Conner, PA; Irvine, JTS
      Novel tin oxide spinel-based anodes for Li-ion batteries

      JOURNAL OF POWER SOURCES
    64. Gejke, C; Zanghellini, E; Fransson, L; Edstrom, K; Borjesson, L
      The effect of lithium insertion on the structure of tin oxide-based glasses

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    65. Kobayashi, H; Uebou, Y; Ishida, T; Tamura, S; Mochizuki, S; Mihara, T; Tabuchi, M; Kageyama, H; Yamamoto, Y
      Electrochemical property of tin oxide thin film by photo-CVD process

      JOURNAL OF POWER SOURCES
    66. Santos-Pena, J; Brousse, T; Sanchez, L; Morales, J; Schleich, DM
      Antimony doping effect on the electrochemical behavior of SnO2 thin film electrodes

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    67. Poizot, P; Laruelle, S; Grugeon, S; Dupont, L; Tarascon, JM
      Searching for new anode materials for the Li-ion technology: time to deviate from the usual path

      JOURNAL OF POWER SOURCES
    68. Li, NC; Martin, CR; Scrosati, B
      Nanomaterial-based Li-ion battery electrodes

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    69. Takeda, Y; Yang, J
      New composite anode systems combined with Li2.6Co0.4N

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    70. Liu, ZL; Lee, JY
      Electrochemical performance of Pb-3(PO4)(2) anodes in rechargeable lithiumbatteries

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    71. Laruelle, S; Poizot, P; Baudrin, E; Briois, V; Touboul, M; Tarascon, JM
      X-ray absorption study of cobalt vanadates during cycling usable as negative electrode in lithium battery

      JOURNAL OF POWER SOURCES
    72. Rowsell, JLC; Gaubicher, J; Nazar, LF
      A new class of materials for lithium-ion batteries: iron(III) borates

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    73. Tovar, LLG; Connor, PA; Belliard, F; Torres-Martinez, LM; Irvine, JTS
      Investigation of lead tin fluorides as possible negative electrodes for Li-ion batteries

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    74. Ishikawa, M; Tasaka, Y; Yoshimoto, N; Morita, M
      Optimization of physicochemical characteristics of a lithium anode interface for high-efficiency cycling: an effect of electrolyte temperature

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    75. Mogi, R; Inaba, M; Abe, T; Ogumi, Z
      In situ atomic force microscopy observation of lithium deposition at an elevated temperature

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    76. Aurbach, D; Gofer, Y; Schechter, A; Chusid, O; Gizbar, H; Cohen, Y; Moshkovich, M; Turgeman, R
      A comparison between the electrochemical behavior of reversible magnesium and lithium electrodes

      JOURNAL OF POWER SOURCES
    77. Sun, X; Yang, XQ; McBreen, J; Gao, Y; Yakovleva, MV; Xing, XK; Daroux, ML
      New phases and phase transitions observed in over-charged states of LiCoO2-based cathode materials

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    78. Pyun, SI; Shin, HC
      The kinetics of lithium transport through Li1-delta CoO2 thin film electrode by theoretical analysis of current transient and cyclic voltammogram

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    79. Yoon, WS; Ban, SH; Lee, KK; Kim, KB; Kim, MG; Lee, JM
      Electrochemical characterization of layered LiCoO2 films prepared by electrostatic spray deposition

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    80. Imanishi, N; Fujii, M; Hirano, A; Takeda, Y
      Synthesis and characterization of nonstoichiometric LiCoO2

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    81. Julien, C; Gastro-Garcia, S
      Lithated cobaltates for lithium-ion batteries - Structure, morphology and electrochemistry of oxides grown by solid-state reaction, wet chemistry andfilm deposition

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    82. Kanamura, K; Goto, A; Rho, YH; Umegaki, T
      Electrophoretic fabrication of LiCoO2 positive electrodes for rechargeablelithium batteries

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    83. Wang, GX; Lindsay, MJ; Ionescu, M; Bradhurst, DH; Dou, SX; Liu, HK
      Physical and electrochemical characterization of LiNi0.8Co0.2O2 thin-film electrodes deposited by laser ablation

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    84. Yoon, WS; Lee, KK; Kim, KB
      Synthesis of LiA1(y)Co(1-y)O(2) using acrylic acid and its electrochemicalproperties for Li rechargeable batteries

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    85. Lee, KK; Yoon, WS; Kim, KB; Lee, KY; Hong, ST
      Characterization of LiNi0.85Co0.10M0.05O2 (M = Al, Fe) as a cathode material for lithium secondary batteries

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    86. Rao, GS; Chowdari, BVR; Lindner, HJ
      Yttrium-doped Li(Ni, Co)O-2: an improved cathode for Li-ion batteries

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    87. Gover, RKB; Kanno, R; Mitchell, BJ; Hirano, A; Kawamoto, Y
      The role of nickel content on the structure and electrochemical propertiesof Li-x(NiyCo1-y)O-2

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    88. Lee, KK; Yoon, WS; Kim, KB; Lee, KY; Hong, ST
      Thermal behavior and the decomposition mechanism of electrochemically delithiated Li1-xNiO2

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    89. Uchimoto, Y; Sawada, H; Yao, T
      Changes in electronic structure by Li ion deintercalation in LiNiO2 from nickel L-edge and OK-edge XANES

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    90. Urbano, A; deCastro, SC; Landers, R; Morais, J; Siervo, AD; Gorenstein, A; Tabacniks, MH; Fantini, MCA
      Electronic structure of LixNiOy thin films

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    91. Robertson, AD; Armstrong, AR; Bruce, PG
      Low temperature lithium manganese cobalt oxide spinels, Li4-xMn5-2xCo3xO12(0 <= x <= 1), for use as cathode materials in rechargeable lithium batteries

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    92. Kilroy, WP; Ferrando, WA; Dallek, S
      Synthesis and characterization of Li2Mn4O9 cathode material

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    93. Franger, S; Bach, S; Pereira-Ramos, JP; Baffier, N
      Highly rechargeable LixMnO2+delta oxides synthesized via low temperatures techniques

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    94. Yamaki, J; Egashira, M; Okada, S
      Voltage prediction from Coulomb potential created by atoms of spinel LiMn2O4 cathode active material for Li ion cells

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    95. Morita, M; Nakagawa, T; Yamada, O; Yoshimoto, N; Ishikawa, M
      Influences of the electrolyte composition on the charge and discharge characteristics of LiCr0.1Mn1.9O4 positive electrode

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    96. Numata, T; Amemiya, C; Kumeuchi, T; Shirakata, M; Yonezawa, M
      Advantages of blending LiNi0.8Co0.2O2 into Li1+xMn2-xO4 cathodes

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    97. Liu, ZL; Lee, JY; Lindner, HJ
      Effects of conducting carbon on the electrochemical performance of LiCoO2 and LiMn2O4 cathodes

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    98. Sakurai, T; Kimura, T; Sugihara, T
      Improved cycle performance of orthorhombic LiMn0.95-xMxCr0.05O2; M = Al, Ga, Yb and In, synthesized by hydrothermal technique

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    99. Pyun, SI; Kim, SW
      Lithium transport through Li1-delta Mn2O4 electrode involving the orderingof lithium ion by numerical analysis of current transient

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    100. Aoshima, T; Okahara, K; Kiyohara, C; Shizuka, K
      Mechanisms of manganese spinels dissolution and capacity fade at high temperature

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Documento generato il 31/10/20 alle ore 23:55:22