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Coordination with large valence and small coordination number tend capacity is the capacity of ions to form one or several not to share polyhedron elements with each other . coordination polyhedra depending on ( i ) the sizes ...
Coordination with large valence and small coordination number tend capacity is the capacity of ions to form one or several not to share polyhedron elements with each other . coordination polyhedra depending on ( i ) the sizes ...
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Thus , the first Pauling rule can be effectively used for superconductive phases with a perovskite - type structure when the coordination capacities of cations are known . During the formation of a crystal structure with a defined ...
Thus , the first Pauling rule can be effectively used for superconductive phases with a perovskite - type structure when the coordination capacities of cations are known . During the formation of a crystal structure with a defined ...
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The distortion of the coordination sphere of the Rb + ions in the solutions of rubidium sulfate and nitrate was revealed ( 10 , 23 ) . This may be due to the effect of negative hydration of ions , which is reflected in distribution ...
The distortion of the coordination sphere of the Rb + ions in the solutions of rubidium sulfate and nitrate was revealed ( 10 , 23 ) . This may be due to the effect of negative hydration of ions , which is reflected in distribution ...
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Contents | 685 |
Complex Oxides Containing Singly Doubly and Triply Charged Cations and a Tetrahedral Anion | 691 |
Nonstoichiometric Lanthanide Titanates in Films | 703 |
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absorption Abstract according acid allows analysis angles anion aqueous solutions atoms band binary bond calculated cations characteristic Chem chemical Chemistry compared complexes components composition compounds concentration constant containing coordination Copyright corresponding crystal curves decrease dependence described determined distances effect electronic elements equal equilibrium experimental extraction formation heating hydrogen increase initial Inorganic intensity interaction Interperiodica ionic ions Khim Khimii layer leads ligand lines metal method mixture mol/l molecules Moscow Nauk Neorg observed obtained occurs oxide oxygen atoms parameters phase phosphates position possible precipitate prepared present properties range ratio reaction REFERENCES region respectively Russian salts samples Sciences shows similar solid solubility solutions solvent space group spectra spectrum stability structure studied surface synthesis Table temperature thermal tion values X-ray diffraction