Page 176 - Thesis_Oprysk_Volodymyr
P. 176

171

               in  alkaline  aqueous  solution.  Journal  of  The  Electrochemical  Society,  142(8),  2695.


               https://doi.org/10.1149/1.2050076

                      192.  Ma,  X., Wei,  X.,  Dong,  H.,  &  Liu, Y.  (2010). The  relationship  between

               discharge capacity of LaNi 5 type hydrogen storage alloys and formation enthalpy. Journal

               of          Alloys           and            Compounds,              490(1–2),            548–551.

               https://doi.org/10.1016/j.jallcom.2009.10.078

                      193.  Liu, Y., Chabane, D., & Elkedim, O. (2024). Optimization of LaNi 5 hydrogen

               storage properties by the combination of mechanical alloying and element substitution.

               International         Journal        of       Hydrogen         Energy,         53,       394–402.

               https://doi.org/10.1016/j.ijhydene.2023.12.038

                      194.  Verbovyts'kyi, Y. V., & Zavalii, I. Y. (2017). New metal-hydride materials

               based on R 2-xMg xNi 4 alloys for chemical current sources. Materials Science, 52, 747–

               759. https://doi.org/10.1007/s11003-017-0018-6

                      195.  Verbovytskyy,  Y.,  Oprysk,  V.,  Dubov,  Y.  and  Zavaliy,  I.  (2022).

               Electrochemical  hydrogenation  properties  of  Nd 2MgT 9  (T  =  3d-metals)  multi-phase

               alloys.      Chemistry        of      Metals       and       Alloys,      15(1/2),       pp.26-33.

               https://doi.org/10.30970/cma15.0426.

                      196.  Yartys, V., & Denys, R. (2014). Thermodynamics and crystal chemistry of

               the RE 2MgNi 9H 12-13 (RE=La and Nd) hydrides. Chemistry of Metals and Alloys, 7, 1–8.

                      197.  Shtender, V. V., Denys, R. V., Paul-Boncour, V., Zavaliy, I. Y., Verbovytskyy,

               Y. V., & Taylor, D. D. (2017). Crystal structure, hydrogen absorption-desorption behavior

               and magnetic properties of the Nd 3-xMg xCo 9 alloys. Journal of Alloys and Compounds,

               695, 1426–1435. https://doi.org/10.1016/j.jallcom.2016.10.268

                      198.  Verbovytskyy,  Y.,  Oprysk,  V.,  Lyutyy,  P.  and  Zavaliy,  I.,  2022.

               Electrochemical Hydrogenation Properties of New YNi 3 and YNi 4 Based Alloys. Solid

               State Phenomena, 331, pp.25-30. https://doi.org/10.4028/p-c9wr6y.

                      199.  Berezovets', V. V., Denys, R. V., Ryabov, O. B., et al. (2007). Hydrides of

               substituted derivatives based on the YNi 3 compound. Materials Science, 43, 499–507.

               https://doi.org/10.1007/s11003-007-0058-4
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