Atomistic simulation and ab initio study of the defect structure of spinel-related Li 0.5-0.5xMg xFe 2.5-0.5xO 4

H. M. Widatallah*, E. A. Moore, A. A. Babo, M. S. Al-Barwani, M. Elzain

*المؤلف المقابل لهذا العمل

نتاج البحث: المساهمة في مجلةArticleمراجعة النظراء

9 اقتباسات (Scopus)

ملخص

The position of magnesium ions in Mg 2+-doped lithium ferrite of the composition Li 0.5-0.5xMg xFe 2.5-0.5xO 4, which has been a matter of uncertainty among some experimentalists, is investigated using interatomic potential and ab initio DFT calculations. Among possible 19 defect structure models, some of which have been reported experimentally to be the most favorable, the lowest energy is found for Mg 2+ ions evenly replacing Li + and Fe 3+ ion on octahedral sites. This gives a decrease in magnetisation for the Mg 2+-doped ferrite relative to the un-doped lithium ferrite. The results suggest that some experimental observations of increased magnetisation of spinel lithium ferrite on Mg 2+-doping could be due to substitution of Mg 2+ or Li + on tetrahedral sites at the high temperatures used in preparation of the solid and/or the presence of undetected defects in the initial precursors.

اللغة الأصليةEnglish
الصفحات (من إلى)3995-4000
عدد الصفحات6
دوريةMaterials Research Bulletin
مستوى الصوت47
رقم الإصدار12
المعرِّفات الرقمية للأشياء
حالة النشرPublished - ديسمبر 2012

ASJC Scopus subject areas

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بصمة

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