Nanograined (grain size 10 nm) ZnO films with various Co contents (0-52 at.% Co) were synthesized by a novel liquid ceramics method. The solubility limit for Co was determined at 550 Β°C. The lattice parameter c of the ZnO-based solid solution with wu Β¨rzite structure ceases to grow at 33 at.% Co. Th
Increase of Mn solubility with decreasing grain size in ZnO
β Scribed by Boris Straumal; Brigitte Baretzky; Andrei Mazilkin; Svetlana Protasova; Ata Myatiev; Petr Straumal
- Book ID
- 104023062
- Publisher
- Elsevier Science
- Year
- 2009
- Tongue
- English
- Weight
- 340 KB
- Volume
- 29
- Category
- Article
- ISSN
- 0955-2219
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β¦ Synopsis
Nanograined (grain size 20 nm) ZnO films with various Mn content (from 0 to 47 at%) were synthesized by the novel wet chemistry method. The solubility limit for Mn was determined at 550 β’ C. The lattice parameter c of the ZnO-based solid solution with wurzite structure ceases to grow at 30 at% Mn. The peaks of the second phase (Mn 3 O 4 with cubic lattice) become visible in the X-rays diffraction spectra at 30 at% Mn. The same second phase appears in the bulk ZnO already at 12 at% Mn. The recently published papers on the structure and magnetic behaviour of Mn-doped ZnO allowed us to obtain the size-dependence of Mn solubility in ZnO for the polycrystals and small single-crystalline particles. The overall Mn solubility drastically increases with decreasing grain size. The quantitative estimation leads to the conclusion that, close to the bulk solubility limit, the thickness of an Mn-enriched layer is several monolayers in GBs and at least two monolayers in the free surfaces.
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