Page 154 - Thesis_Oprysk_Volodymyr
P. 154

149

                      10.    Sato, T., Saitoh, H., Utsumi, R., Ito, J., Nakahira, Y., Obana, K., Takagi, S.,


               & Orimo, S. I. (2023). Hydrogen absorption reactions of hydrogen storage alloy LaNi 5

               under high pressure. Molecules, 28(3), 1256. https://doi.org/10.3390/molecules28031256

                      11.    Sutton, A. L., Mardel, J. I., & Hill, M. R. (2024). Metal-organic frameworks

               (MOFs)  as  hydrogen  storage  materials  at  near-ambient  temperature.  Chemistry  -  A

               European Journal, 30(44), e202400717. https://doi.org/10.1002/chem.202400717

                      12.    Yuvaraj, A. R., Jayarama, A., Sharma, D., Nagarkar, S. S., Duttagupta, S. P.,

               & Pinto, R. (2024). Role of metal-organic framework in hydrogen gas storage: A critical

               review.     International      Journal      of    Hydrogen        Energy,     59,     1434–1458.

               https://ui.adsabs.harvard.edu/abs/2024IJHE...59.1434Y

                      13.    Ahmed, A., Seth, S., Purewal, J., Wong-Foy, A. G., Veenstra, M., Matzger,

               A. J., & Siegel, D. J. (2019). Exceptional hydrogen storage achieved by screening nearly

               half  a  million  metal-organic  frameworks.  Nature  Communications,  10,  1568.

               https://doi.org/10.1038/s41467-019-09365-w

                      14.    Zaluska, A., Zaluski, L., & Ström-Olsen, J. O. (2000). Sodium alanates for

               reversible  hydrogen  storage.  Journal  of  Alloys  and  Compounds,  298(1–2),  125–134.

               https://doi.org/10.1016/S0925-8388(99)00666-0

                      15.    Dedrick,  D.  E.,  Kanouff,  M.  P.,  Replogle,  B.  C.,  &  Gross,  K.  J.  (2005).

               Thermal  properties  characterization  of  sodium  alanates.  Journal  of  Alloys  and

               Compounds, 389(1–2), 299–305. https://doi.org/10.1016/j.jallcom.2004.08.007

                      16.    Li,  S.,  Ahuja,  R.,  Araújo,  C.  M.,  Johansson,  B.,  &  Jena,  P.  (2010).

               Dehydrogenation associated with Ti catalyst in sodium alanate. Journal of Physics and

               Chemistry of Solids, 71(8), 1073–1076. https://doi.org/10.1016/j.jpcs.2010.03.009

                      17.    Yang,  X.,  Su,  J.,  Lu,  X.,  Kong,  J.,  Huo,  D.,  Pan, Y.,  &  Li,  W.  (2024).

               Application and development of LiBH 4 hydrogen storage materials. Journal of Alloys and

               Compounds, 1001, 175174. https://doi.org/10.1016/j.jallcom.2024.175174

                      18.    Züttel, A.,  Rentsch,  S.,  Fischer,  P., Wenger,  P.,  Sudan,  P.,  Mauron,  P.,  &

               Emmenegger, C. (2003). Hydrogen storage properties of LiBH 4. Journal of Alloys and

               Compounds, 356–357, 515–520. https://doi.org/10.1016/S0925-8388(02)01253-7
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