Page 181 -
P. 181

192. Zavaliy, I., Denys, R., Koval’chuck, I.V., Riabov, A.B., Delaplane, R.G.: Hy-

                     drogenation of Ti Zr Fe O  alloys and crystal structure analysis of their deuter-
                                                 2
                                              x
                                         4-x
                                                    y
                     ides. Сhemistry of Metals and Alloys 2, 59–67 (2009). doi: 10.30970/cma2.0093
                193. Hiebl, K., Tuscher, E., Bittner, H.: Untersuchungen an Hydriden im Bereich der

                     η-Phase  Ti Fe O.  Monatshefte  für  Chemie  110,  9–19  (1979).  doi:
                                   4
                                       2
                     10.1007/BF00903742


                194. Zavaliy,  I.Yu.,  Denys,  R.V.,  Riabov,  A.В.,  Koval’chuck,  I.V.,  Lyutyy,  P.Ya.:
                     Crystal  structure  analysis  of  the  Ti ZrFe O D   and  TiZr Fe O D   deuter-
                                                                                             2
                                                                                         3
                                                                                                0.3
                                                                    2
                                                                       0.3
                                                                                                    7.5
                                                                            6.4
                                                              3
                     ides.  Chemistry  of  Metals  and  Alloys  7,  100–105  (2014).  doi:
                     10.30970/cma7.0273
                195. Pick, M.A., Wenzl, H.: Physical metallurgy of FeTi-hydride and its behaviour in
                     a  hydrogen  storage  container.  Int.  J.  Hydrogen  Energy  1(4),  413–420  (1977).


                     doi: 10.1016/0360-3199(77)90094-5

                196. Westlake, D.G.: Deuterium site occupation in the oxygen‐stabilized η‐carbides

                     Zr V OD . II. Application of a geometric model. J. Chem. Phys. 79, 4532–4538
                          3
                               x
                       3
                     (1983). doi: 10.1063/1.446367
                197. Zavaliy, I.Yu., Yelon, W.B., Zavalij, P.Y., Saldan, I.V., Pecharsky, V.K.: The

                     crystal  structure  of  the  oxygen-stabilized  η-phase  Zr V O D .  J.  Alloys  and
                                                                                         x
                                                                                      3
                                                                                            9.6
                                                                                   3
                     Compounds 309(1–2), 75–82 (2000). doi: 10.1016/S0925-8388(00)00899-9
                198. Rotella, F.J., Flotow, H.E., Gruen, D.M., Jorgensen, J.D.: Deuterium site occu-

                     pation in the oxygen-stabilized η-carbides Zr V OD . I. Preparation and neutron
                                                                        3
                                                                           3
                                                                                x
                     powder  diffraction.  J.  Chem.  Phys.  79(9),  4522–4531  (1983).  doi:
                     10.1063/1.446339

                199. Zavaliy,  I.Yu.:  Effect  of  oxygen  content  on  hydrogen  storage  capacity  of  Zr-

                     based  η-phases.  J.  Alloys  and  Compounds  291(1–2),  102–109  (1999).  doi:

                     10.1016/S0925-8388(99)00187-5

                200. Pavlovska,  O.,  Lutsyuk,  I.,  Kondyr,  A.,  Zhydachevskyy,  Ya.,  Vakhula,  Ya.,

                     Pieniazek, A., Vasylechko, L.: Synthesis and structure characterisation of micro-

                     and nanocrystalline powders of Dy R FeO  (R = La, Pr, Nd, Sm, Gd). Acta
                                                              1-x
                                                                        3
                                                                  x
                     Physica Polonica A 133, 802–805 (2018). doi: 10.12693/APhysPolA.133.802


                                                                                                            181
   176   177   178   179   180   181   182