Structural transformations in Cu1.95Ni0.05S crystals


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Abstract

A solid solution of the Cu1.95Ni0.05S composition has been synthesized for the first time due to the partial replacement of Cu with Ni atoms in Cu2S. The polymorphic transformations in the polycrystalline samples in the temperature range of 300–1400 K have been investigated by X-ray diffraction and differential thermal analysis. It is established that, at room temperature, the synthesized Cu1.95Ni0.05S samples have an orthorhombic lattice with unit-cell parameters a = 26.50 Å, b = 15.39 Å, and c = 13.85 Å (sp. gr. Abm2). Heating to T = 379 ± 2 K leads to its transformation into a hexagonal lattice with parameters a = 3.960 Å and c = 6.78 Å (sp. gr. P63/mmc). At 750 ± 2 K, the hexagonal modification is transformed into a cubic one with period a = 5.788 Å (sp. gr. Fm\(\bar 3\)m). The phase transition in this crystal is enantiotropic.

About the authors

V. I. Nasirov

Institute of Physics

Author for correspondence.
Email: vaqif-nesir@mail.ru
Azerbaijan, Baku, Az-1143

A. G. Rzaeva

Institute of Physics

Email: vaqif-nesir@mail.ru
Azerbaijan, Baku, Az-1143

G. B. Ibragimov

Institute of Physics

Email: vaqif-nesir@mail.ru
Azerbaijan, Baku, Az-1143

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