n=2 Member of the hexagonal perovskite-intergrowth manganate family A+1Mn O3+3(Ca2O)
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry
Reference11 articles.
1. Inorganic Crystal Structures;Hyde,1989
2. Oxygen stoichiometry and structural properties of La1 – xAxMnO3 ± δ (A = Ca or Sr and 0 ≤ x ≤ 1)
3. Low temperature synthesis, structure and magnetic properties of La0.85(Na1−xKx)0.15MnO3 perovskites: the role of A cation size disparity in the electronic properties of mixed-valence manganates
4. Transition Metal Oxides;Rao,1998
5. Structural Chemistry and Electronic Properties of the n = 3 Ruddlesden−Popper Phases Ca4Mn2FeO9.75 and Sr4Mn2FeO9.80
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1. Materials discovery by crystal growth: Lanthanide metal containing oxides of the platinum group metals (Ru, Os, Ir, Rh, Pd, Pt) from molten alkali metal hydroxides;Journal of Solid State Chemistry;2009-07
2. Ln2Sr2PtO7+δ (Ln=La, Pr, and Nd): Three new Pt-containing [AnBn−1O3n]-type hexagonal perovskites;Journal of Solid State Chemistry;2007-12
3. Crystal growth and structures of three new platinates: Ln3NaPtO7 (Ln=La, Nd) and La4PtO7;Solid State Sciences;2007-09
4. La2.50K1.50IrO7: An example of an member of the [AnBn−1O3n][] family of perovskite-related oxides;Journal of Solid State Chemistry;2005-10
5. Structural and magnetic properties of Ba3La3Mn2W3O18;Journal of Solid State Chemistry;2005-01
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