Page 166 - 
        P. 166
     65. Gennari,  F.C.,  Castro,  F.J.,  Urretavizcaya,  G.:  Hydrogen  desorption  behavior
                   from magnesium hydrides synthesized by reactive mechanical alloying. J. Alloys
                   Comp. 321(1), 46–53 (2001). doi: 10.1016/S0925-8388(00)01460-2
                66. Berezovets, V.V., Denys, R.V., Zavaliy, I.Yu., Kosarchyn, Yu.V.: Effect of Ti-
                   based  nanosized  additives  on  the  hydrogen  storage  properties  of  MgH .  Int.  J.
                                                                                                      2
                   Hydrogen            Energy          47(11),         7289–7298           (2022).         doi:
                   10.1016/j.ijhydene.2021.03.019
                67. Lototskyy, M., Davids, M.W., Sibanyoni, J.M., Goh, J., Pollet, B.G.: Magnesium-
                   based hydrogen storage nanomaterials prepared by high energy reactive ball mill-
                   ing in hydrogen at the presence of mixed titaniumeiron oxide. J. Alloy. Compd.
                   645, 454–459 (2015). doi: 10.1016/j.jallcom.2014.12.084
                68. Lototskyy, M., Goh, J., Davids, M.W., Linkov, V., Khotseng, L., Ntsendwana, B.,
                   Denys, R., Yartys, V.A.: Nanostructured hydrogen storage materials prepared by
                   high-energy reactive ball milling of magnesium and ferrovanadium, Int. J. Hy-
                   drogen Energy 44, 6687–6701 (2019). doi: 10.1016/j.ijhydene.2019.01.135
                69. El-Eskandarany, M.S., Al-Ajmi, F., Banyan, M., Al-Duweesh, A.: Synergetic ef-
                   fect of reactive ball milling and cold pressing on enhancing the hydrogen storage
                   behavior of nanocomposite MgH /10 wt% TiMn  binary system. Int. J. Hydrogen
                                                                          2
                                                         2
                   Energy 44(48), 26428–26443 (2019). doi: 10.1016/j.ijhydene.2019.08.093
                70. Liang, D., Long, H., Hui, W., Min, Z.: Excellent catalysis of MoO  on the hydro-
                                                                                               3
                   gen sorption of MgH . Int. J. Hydrogen Energy 44(55), 29249–29254 (2019). doi:
                                           2
                   10.1016/j.ijhydene.2019.01.285
                71. Cui, J., Wang, H., Liu, J.W., Ouyang, L.Z., Zhang, Q.G., Sun, D.L., Yao, X.D.,
                   Zhu,  M.:  Remarkable  enhancement  in  dehydrogenation  of  MgH   by  a  nano-
                                                                                                2
                   coating  of  multi-valence  Ti-based  catalysts.  J.  Mater.  Chem.  A  1,  5603–11
                   (2013).  doi: 10.1039/ C3TA01332D
                72. Zahiri, B., Harrower, C., Shalchi A.B., Mitlin, D.: Rapid and reversible hydrogen
                   sorption in Mg–Fe–Ti thin films. App. Physics Lett. 95, 103114–103114 (2009).
                   doi: 10.1063/1.3212734
                                                                                                            166
     	
