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Ternary hydrides
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(Ed.), Springer, Berlin, these two reviews are recommended for general reading
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Yamaguchi M, Akiba E, Ternary hydrides. In: Buschow KHJ (Ed.), Materials Science and Technology 3B, Electronic and Magnetic Properties of Metals and Ceramics, Part II, VCH, Weinheim, Germany, 1994:333-398; Schlapbach L (Ed.), Hydrogen in Intermetallics, Vol. 1, Springer, Berlin, 1988; these two reviews are recommended for general reading.
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Schlapbach, L.1
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2Ni is clearly shown. Unfortunately, the width of the control of hydrogenation temperature is not wide enough compared to other alloy systems.
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2Ni is clearly shown. Unfortunately, the width of the control of hydrogenation temperature is not wide enough compared to other alloy systems.
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Tsushio, Y.1
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0.03 (M1=Cr, Fe, Co, Mn) alloys. J. Alloys Comp. 281:1998;301-305.
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0031130942
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Characterization and hydriding properties of Mg-graphite composites prepared by mechanical grinding as new hydrogen storage materials
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Imamura H., Sakasai N., Fujinaga T. Characterization and hydriding properties of Mg-graphite composites prepared by mechanical grinding as new hydrogen storage materials. J. Alloys Comp. 253-354:1997;34-37.
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Imamura, H.1
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0031224493
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Mg composites for hydrogen storage. The dependence of hydriding properties on composition
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Gross K.J., Spatz P., Züttel A., Schlapbach L. Mg composites for hydrogen storage. The dependence of hydriding properties on composition. J. Alloys Comp. 261:1998;276-280.
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Mechanically milled Mg composites for hydrogen storage: The relationship between morphology and kinetics
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0032070239
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Structural and hydriding properties of amorphous MgNi with interstitial dissolved carbon
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Funaki K., Orimo S., Fujii H., Sumida H. Structural and hydriding properties of amorphous MgNi with interstitial dissolved carbon. J. Alloys Comp. 270:1998;160-163.
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Funaki, K.1
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0040352051
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Effect of processing parameters on Mg-based hydrogen storage materials prepared by mechanical alloying
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J.C. Bolcich, & T.N. Veziroglu. Buenos Aires, Argentina: Corradi Impresiones
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Sapru K., Ming L., Evans J., Stetson N.T. Effect of processing parameters on Mg-based hydrogen storage materials prepared by mechanical alloying. Bolcich J.C., Veziroglu T.N. Hydrogen energy progress XII. 1998;1183-1192 Corradi Impresiones, Buenos Aires, Argentina.
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Hydrogen Energy Progress XII
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Sapru, K.1
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21
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0030855596
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2Ni-H system synthesized by reactive mechanical grinding
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The possibility of mechanical grinding to control hydrogenation properties of alloys is shown in detail with some examples.
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2Ni-H system synthesized by reactive mechanical grinding. Acta Mater. 45:1997;331-341. The possibility of mechanical grinding to control hydrogenation properties of alloys is shown in detail with some examples.
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Acta Mater.
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Orimo, S.1
Fujii, H.2
Ikeda, K.3
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22
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0031166224
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Structural and hydriding properties of Mg-Ni-H system with nano- and/or amorphous structures
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Orimo S., Ikeda K., Fujii H., Fujikawa Y., Kitano Y., Yamamoto K. Structural and hydriding properties of Mg-Ni-H system with nano- and/or amorphous structures. Acta Mater. 45:1997;2271-2278.
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Orimo, S.1
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0032058117
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Effect of nanometer-scale structure on hydriding properties of Mg-Ni alloys: Review
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Orimo S., Fujii H. Effect of nanometer-scale structure on hydriding properties of Mg-Ni alloys: Review. Intermetallics. 6:1998;185-192.
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24
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0032132369
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x)Ni-H(D) with amorphous or CsCl-type cubic structure (x=0-0.5)
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This paper describes the most advanced Mg-based hydrogen-absorbing alloys and points out the direction of R&D of these alloys in future.
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x)Ni-H(D) with amorphous or CsCl-type cubic structure (x=0-0.5). Acta Mater. 46:1998;4519-4525. This paper describes the most advanced Mg-based hydrogen-absorbing alloys and points out the direction of R&D of these alloys in future.
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Orimo, S.1
Ikeda, K.2
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Fukunaga, T.5
Züttel, A.6
Schlapbach, L.7
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25
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0032181669
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Cobalt- And copper-substitution effects on thermal stability and hydriding properties of amorphous MgNi
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Ikeda K., Orimo S., Züttel A., Schlapbach L., Fujii H. Cobalt- and copper-substitution effects on thermal stability and hydriding properties of amorphous MgNi. J. Alloys Comp. 280:1998;279-283.
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Fujii, H.5
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28
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0032070446
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Surface analysis of an amorphous MgNi alloy prepared by mechanical alloying for use in nickel-metal hydride batteries
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Zhang S.G., Yorimitsu K., Nohara S., Morikawa T., Inoue H., Iwakura C. Surface analysis of an amorphous MgNi alloy prepared by mechanical alloying for use in nickel-metal hydride batteries. J. Alloys Comp. 270:1998;123-126.
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2 absorbing-desorbing characterization of the Ti-V-Fe alloy systems
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2 absorbing-desorbing characterization of the Ti-V-Fe alloy systems. J. Alloys Comp. 231:1995;513-517.
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0029323821
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Phase structure of V-based solid solutions containing Ti and Ni and their hydrogen absorption-desorption properties
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Tsukahara M., Takahashi K., Mishima T., Sakai T., Miyamura H., Kuriyama N., Uehanara I. Phase structure of V-based solid solutions containing Ti and Ni and their hydrogen absorption-desorption properties. J. Alloys Comp. 224:1995;162-167.
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37
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0030126149
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V-based solid solution alloys with Laves phase network: Hydrogen absorbing properties and microstructure
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This paper suggests the new concept for development of alloys for electrode application.
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Tsukahara M., Takahashi K., Mishima T., Isomura A., Sakai T. V-based solid solution alloys with Laves phase network: Hydrogen absorbing properties and microstructure. J. Alloys Comp. 236:1995;151-155. This paper suggests the new concept for development of alloys for electrode application.
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0030263435
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Heat-treatment of V-based solid solution alloy with TiNi-based network structure on hydrogen storage and electrode properties
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Tsukahara M., Takahashi K., Mishima T., Isomura A., Sakai T. Heat-treatment of V-based solid solution alloy with TiNi-based network structure on hydrogen storage and electrode properties. J. Alloys Comp. 243:1996;133-138.
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0031650762
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Influence of oxygen on hydrogen storage and electrode properties for micro-designed V-based battery alloys
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Tsukahara M., Takahashi K., Isomura A., Sakai T. Influence of oxygen on hydrogen storage and electrode properties for micro-designed V-based battery alloys. J. Alloys Comp. 265:1998;257-263.
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0029536417
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The relation between microstructure and hydrogen absorbing property in Laves phase-solid solution multiphase alloys
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Iba H., Akiba E. The relation between microstructure and hydrogen absorbing property in Laves phase-solid solution multiphase alloys. J. Alloys Comp. 231:1995;508-512.
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P.D. Bannett, Sakai T. Pennington, NJ: The Electrochemical Society
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Akiba E., Huot J., Iba H. Laves phase related multiphase alloys. Bannett P.D., Sakai T. The electrochemical society proceedings. 94-27:1994;165-171 The Electrochemical Society, Pennington, NJ.
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0031131525
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Iba H., Akiba E. Hydrogen absorption and modulated structure in Ti-V-Mn alloys. J. Alloys Comp. 253-254:1997;21-24.
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Iba, H.1
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45
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0032156996
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Hydrogen absorption by Laves phase related BCC solid solution
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The concept of Laves phase related BCC solid solution is described and good examples of hydrogen-absorbing alloys with a hydrogen capacity higher than 2 mass% are shown.
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Akiba E., Iba H. Hydrogen absorption by Laves phase related BCC solid solution. Intermetallics. 6:1998;461-470. The concept of Laves phase related BCC solid solution is described and good examples of hydrogen-absorbing alloys with a hydrogen capacity higher than 2 mass% are shown.
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Intermetallics
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Akiba, E.1
Iba, H.2
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46
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0031131078
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Ti-doped alkali metal aluminum hydrides as potential novel reversible hydrogen storage materials
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Bogdanovic B., Schwickardi M. Ti-doped alkali metal aluminum hydrides as potential novel reversible hydrogen storage materials. J. Alloy Comp. 253-254:1997;1-9. This is the only one paper on reversible hydrogen absorption-desorption by alkali metal hydrides.
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