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Автор Jonathan C Wasse
Автор Philip S Salmon
Дата выпуска 1999-02-15
dc.description The total structure factors of the molten trivalent metal halides MX<sub>3</sub>, where M<sup>3+</sup> denotes La<sup>3+</sup> or Ce<sup>3+</sup> and X<sup>-</sup> denotes C1<sup>-</sup>, Br<sup>-</sup> or I<sup>-</sup>, have been measured by using neutron diffraction. Difference function methods were then applied on assuming that the LaX<sub>3</sub> and CeX<sub>3</sub> melts for a given halide ion are isomorphic. The results which follow from this assumption show that the first sharp diffraction peak in the measured total structure factors arises from cation correlations and its movement to lower scattering vector values with increasing anion size is consistent with an enhanced separation in real space of cation centred polyhedra. On melting the MX<sub>3</sub> salts exhibit a decrease in the coordination number of both the cations and anions. In the liquid state the M-X coordination environment is asymmetric with M-Cl, M-Br and M-I nearest-neighbour distances of 2.93(2) Å, 3.01(2) Å, 3.18(2) Å and M-Cl, M-Br and M-I coordination numbers of 8.2(2), 7.4(2), 6.7(2) respectively. The Cl-Cl, Br-Br and I-I nearest-neighbour distances are 3.58(3) Å, 3.76(3) Å, 4.13(2) Å respectively and there is a significant penetration of the X-X partial pair distribution function into the first peak of the M-X partial pair distribution function for all three anions. The Cl-Cl, Br-Br and I-I coordination numbers are 9.2(2), 8.7(2) and 8.2(2) respectively if the M-M coordination number is two.
Формат application.pdf
Издатель Institute of Physics Publishing
Название Structure of molten lanthanum and cerium tri-halides by the method of isomorphic substitution in neutron diffraction
Тип paper
DOI 10.1088/0953-8984/11/6/004
Electronic ISSN 1361-648X
Print ISSN 0953-8984
Журнал Journal of Physics: Condensed Matter
Том 11
Первая страница 1381
Последняя страница 1396
Аффилиация Jonathan C Wasse; School of Physics, University of East Anglia, Norwich NR4 7TJ, UK
Аффилиация Philip S Salmon; School of Physics, University of East Anglia, Norwich NR4 7TJ, UK
Выпуск 6

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