Page 168 -
P. 168
nanocomposites processed by high-energy ball milling. Int. J. Hydrogen Energy
43(27), 12251–12259 (2018). doi: 10.1016/j.ijhydene.2018.04.174
82. Neto, R.M.L., de Araújo Silva, R., Floriano, R., Coutinho, G.C.S., Falcão, R.B.,
Leiva, D.R., Botta Filho, W.J.: Synthesis by High-Energy Ball Milling of MgH -
2
TiFe Composites for Hydrogen Storage. Materials Science Forum 899, 13–18
(2017). doi: 10.4028/www.scientific.net/msf.899.13
83. Vijay, R., Sundaresan, R., Maiya, M.P., Murthy, S., Fu, Y., Klein, H.-P., Groll,
M.: Characterisation of Mg–x wt.% FeTi (x = 5–30) and Mg–40wt.% FeTiMn
hydrogen absorbing materials prepared by mechanical alloying. J. Alloys and
Compounds 384, 283–295 (2004). doi: 10.1016/j.jallcom.2004.04.115
84. Shalchi, A., Babak, Z., Beniamin, K., Peter, M., David, M.: Synergy of elemental
Fe and Ti promoting low temperature hydrogen sorption cycling of magnesium.
Int. J. Hydrogen Energy 36(11), 6711–6722 (2011). doi:
10.1016/j.ijhydene.2011.02.141
85. Kalisvaart, WP., Harrower, CT., Haagsma, J., Zahiri, B., Luber, EJ., Ophus, C., et
al.: Hydrogen storage in binary and ternary Mg-based alloys: a comprehensive
study. Int. J. Hydrogen Energy 35, 2091–2103 (2010). doi:
10.1016/j.ijhydene.2009.12.013
86. Zavalii, I.Y., Berezovets, V.V., Denys, R.V.: Nanocomposites Based on Magne-
sium for Hydrogen Storage: Achievements and Prospects (A Survey). Materials
Science 54, 611–626 (2019). doi: 10.1007/s11003-019-00226-x
87. Berezovets, V., Denis, R., Zavaliy, I., Paul-Boncour V.: Magnesium Composites
with Additions of Oxygen-Stabilized η-Zr Fe O for Effective Hydrogen Accu-
2
4
0.5
mulation. Powder Metallurgy and Metal Ceramics 53, 335–342 (2014). doi:
10.1007/s11106-014-9621-3
88. Zavalii, I.Y., Denys, R.V. Berezovets, V.V.: Mechanochemical methods for the
synthesis of new magnesium-based composite materials for hydrogen accumula-
tion. Mater. Sci. 45, 248–257 (2009). doi: 10.1007/s11003-009-9175-6
89. Zavaliy, I., Berezovets, V., Denys, R., Kononiuk, O., Yartys, V.: Hydrogen ab-
sorption-desorption properties and hydrolysis performance of MgH -Zr V O H
0.6
x
3
2
3
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