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Influence of synthesis procedure on the YIG formation (CROSBI ID 101321)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Ristić, Mira ; Nowik, Israel ; Popović, Stanko ; Felner, Israel ; Musić, Svetozar Influence of synthesis procedure on the YIG formation // Materials letters, 57 (2003), 16-17; 2584-2590-x

Podaci o odgovornosti

Ristić, Mira ; Nowik, Israel ; Popović, Stanko ; Felner, Israel ; Musić, Svetozar

engleski

Influence of synthesis procedure on the YIG formation

The influence, of synthesis procedure on the yttrium iron garnet (YIG ; Y3Fe5O12) formation has been investigated, by X-ray diffraction (XRD), Fourier transform infrared (FT-IR), Mossbauer and magnetization measurements. The samples were prepared by coprecipitation or ceramic processing using the starting molar ratio Y2O3/Fe2O3 = 3:5. The fractions Of Y2O3, alpha-Fe2O3, YFeO3 and YIG present in the samples depended on the method of materials processing and the calcination temperature. XRD of the thermally treated hydroxide coprecipitate at 1173 K showed the formation of YIG as a dominant phase, and YFeO3 and Y2O3 as associated phases, whereas upon heating at 1473 K, YIG and a small amount of YFeO3 were found. The samples produced by combining ball-milling of the starting powder and ceramic processing at 1573 K contained YIG and a smaller amount of YFeO3, as found by XRD. It was shown that high-energy ball-milling with stainless steel can be substituted by milling with agate! bowl and balls, thus decreasing the contamination of the oxide system due to wear. FT-IR and 57 Fe Mossbauer spectroscopic measurements were in agreement with XRD ; however, the smaller amount of YFeO3 produced at 1573 K could not be detected with certainty by means of FT-IR and 57 Fe Mossbauer spectroscopies. The magnetization values of end-products measured at 5 K were in agreement with their phase composition.

magnetic oxides; yttrium iron garnet; XRD; FT-IR; 57-Fe Mossbauer; magnetic measurements

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Podaci o izdanju

57 (16-17)

2003.

2584-2590-x

objavljeno

0167-577X

Povezanost rada

Fizika, Kemija

Indeksiranost