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Electrical Conductivity and Structural Properties of Cesium Iron Phosphate glasses: A Potential Host for Vitrifying Nuclear Waste (CROSBI ID 482256)

Prilog sa skupa u zborniku | izvorni znanstveni rad | međunarodna recenzija

Moguš-Milanković, Andrea ; Furić, Krešimir ; Day, Delbert E. Electrical Conductivity and Structural Properties of Cesium Iron Phosphate glasses: A Potential Host for Vitrifying Nuclear Waste // Symposium Proceedings Volume 663 / Hart, Kaye P.; Lumpkin Gregory R. (ur.). Sydney: Materials Research Society, 2001

Podaci o odgovornosti

Moguš-Milanković, Andrea ; Furić, Krešimir ; Day, Delbert E.

engleski

Electrical Conductivity and Structural Properties of Cesium Iron Phosphate glasses: A Potential Host for Vitrifying Nuclear Waste

The thermally stimulated current (TSC) and dc conductivity for iron phosphate glasses containing up to 28 mol% Cs2O have been measured in a temperature range from 120 to 400 K. The dc conductivity and activation energy were constant and independent of Cs2O content. With increasing cesium concentration in cesium iron phosphate glasses the slowly moving cesium ions are more tightly bound to the non-bridging oxygen ions and make no measurable contribution to dc conductivity. The dc conduction in these glasses is totally electronic, controlled by electron hopping between iron ions. The ionic conduction is immeasurably small because of the low mobility of the cesium ions. This agreement is reinforced by the excellent chemical durability of the glasses, where the dissolution rate at 90oC changes little with increasing Cs2O content. Raman spectroscopy indicated that the structure of these glasses was composed of predominantly pyrophosphate (P2O7) groups, but the metaphosphate chains (PO3) also existed.

iron phosphate glasses; dc conductivity; nuclear waste

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Podaci o prilogu

2001.

objavljeno

Podaci o matičnoj publikaciji

Hart, Kaye P.; Lumpkin Gregory R.

Sydney: Materials Research Society

Podaci o skupu

Nepoznat skup

predavanje

29.02.1904-29.02.2096

Povezanost rada

Fizika