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Publikace detail

Thermal behavior of Se-rich GeSb2Se(4-y)Tey (glassy) system
Rok: 2016
Druh publikace: článek v odborném periodiku
Název zdroje: Journal of Alloys and Compounds
Název nakladatele: Elsevier Science SA
Místo vydání: Lausanne
Strana od-do: 222-228
Tituly:
Jazyk Název Abstrakt Klíčová slova
cze Tepelné chování na selen bohatých skel systému GeSb2Se(4-y)Tey Byl připraven kompoziční analog GST-124 PCM materiálu ve formě skelného GeSb2Se(4-y)Tey s různým obsahem selenu. Vliv změny složení na relaxační a krystalizační chování byl stanoven. Ge-Sb-Se-Te skla; tepelná kapacita; skelný přechod; krystalizační kinetika; sklotvornost
eng Thermal behavior of Se-rich GeSb2Se(4-y)Tey (glassy) system The thermokinetic behavior of the GeSb2Se(4-y)Tey glassy chalcogenide system (a compositional analog of the famous GST-124 PCM material) was thoroughly investigated. Regarding the glass transition kinetics, the substitution of Se by Te was found to lead to looser structural packing resulting in lower activation energy and more independent relaxation movements. On the other hand, in the case of cold crystallization (studied in dependence on particle size) the addition of Te led to the formation of different crystalline phases with higher activation energy of the crystallization process. In addition, based on the description in terms of the Johnson-Mehl-Avrami nucleation-growth kinetics it was found that the Te addition resulted in prioritization of the volume-located 3D crystal growth. Furthermore, P-type heat capacity dependence was found to occur in the present chalcogenide system, where the Te addition led to an increase of the C-p-T curvature in the undercooled liquid. Concerning the overall thermokinetic characterization, the effect of Se <-> Te substitution on glass-stability and glass-forming ability was discussed. Ge-Sb-Se-Te glasses; Heat capacity; Glass transition; Crystallization kinetics; Glass-forming ability