Page 195 - Дисертація_Влад_Христина_Ігорівна
P. 195

[142] Baranowski, B., Szklarska-Smialowska, Z., & Smialowski, M. (1958). Bulletin
                  de l’Académie Polonaise des Sciences, Série des Sciences Chimiques et Géologiques,

                  6, 179.
                  [143] Baranowski,  B.,  &  Smialowski,  M.  (1959).  International  Journal  of  Physics
                  and Chemistry of Solids, 12, 206.

                  [144] Wayman, M. L., & Weatherly, G. C. (1989). Bulletin of Alloy Phase Diagrams,
                  10, 569.
                  [145] Szklarska-Smialowska,  Z.,  &  Smialowski,  M.  (1963).  Journal  of  the

                  Electrochemical Society, 110, 444.
                  [146] Jarmolowicz, H., & Smialowski, M. (1962). Journal of Catalysis, 1, 165.
                  [147] Bernardini,  M.,  Comisso,  N.,  Davolio,  G.,  et  al.  (1998).  Journal  of

                  Electroanalytical Chemistry, 442, 125.
                  [148] Bernardini,  M.,  Comisso,  N.,  Mengoli,  G.,  et  al.  (1998).  Journal  of
                  Electroanalytical Chemistry, 457, 205.

                  [149] Baranowski, B. (1999). Journal of Electroanalytical Chemistry, 472, 182.
                  [150] Jusksnas, R., Valsiūnas, I., Jasulaitienė, V., et al. (2002). Electrochimica Acta,
                  47, 4239.
                  [151] Soares,  D.  M.,  Teschke,  O.,  &  Torriani,  I.  (1992).  Hydride  Effect  on  the

                  Kinetics of the Hydrogen Evolution Reaction on Nickel Cathodes in Alkaline Media.
                  Journal of the Electrochemical Society, 139, 98–105.
                  [152]  Monev, M. (2001). Electrochimica Acta, 46, 2373.

                  [153] Metal hydride electrodes. In: Handbook of Battery Materials, pp. 239–268.
                  [154] Kleperis,  J.,  Wójcik,  G.,  Czerwinski,  A.,  Skowronski,  J.,  Kopczyk,  M.,  &
                  Beltowska-Brzezinska,  M.  (2001).  Electrochemical  behaviour  of  metal  hydrides.  J
                  Solid State Electrochem., 5(4), 229–249. https://doi.org/10.1007/s100080000149D.

                  [155] Schlaphach,  L.  Hydrogen  in  Intermetallic  Compounds  I.  Topics  in  Applied
                  Physics. Springer-Verlag, Berlin, 1988.
                  [156] Sakintuna,  B.,  Lamari-Darkrim,  F.,  &  Hirscher,  M.  (2007).  Metal  hydride
                  materials for solid hydrogen storage: A review.  International Journal of Hydrogen

                  Energy, 32, 1121–1140.
                  [157] Cuevas,  F.,  Joubert,  J.  M.,  Latroche,  M.,  &  Percheron-Guegan,  A.  (2001).
                  Thermodynamic  and  structural  properties  of  TiFe-based  metal  hydrides.  Applied
                  Physics A: Materials Science and Processing, 72, 225–230.
                  [158] Feng,  F.  (2001).  Electrochemical  behaviour  of  intermetallic-based  metal

                  hydrides used in Ni/metal hydride (MH) batteries: a review. International Journal of
                  Hydrogen Energy, 26(7), 725–734. https://doi.org/10.1016/S0360-3199(00)00127-0
                  [159] Liu, Y., Pan, H., Gao, M., & Wang, Q. (2011). Advanced hydrogen storage
                  alloys  for  Ni/MH  rechargeable  batteries.  Journal  of  Materials  Chemistry,  21(13),

                  4743–4755. https://doi.org/10.1039/C0JM01921F

                                                                                                               193
   190   191   192   193   194   195   196   197   198   199   200