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La1.8Sr0.2Ni0.8M0.2O4 (M = Fe, Co, or Cu) Complex Oxides: Synthesis, Structural Characterization, and Dielectric Properties
New solid solutions La 1.8 Sr 0.2 Ni 0.8 M 0.2 O 4 (M = Fe, Co, or Cu) have been prepared, and their crystal- chemical characteristics and electric properties...
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Carbon Dioxide Conversion in High Temperature Reactions
This chapter deals with high temperature reactions in which carbon dioxide (CO2) is used either as dehydrogenation agent (“soft oxidant”) or hydrogen... -
Preparation of Highly Active and Stable Perovskite-like Catalyst by Combustion Method: Effect of Complex
Perovskite-like oxides (i.e., LaSrNiO 4 ) prepared by combustion method with various complexes and amounts are compared and their catalytic...
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Electrochemical reduction of NO on La2-x Sr x NiO4 based electrodes
The series La 2 − x Sr x NiO 4 ( x = 0.0, 0.05, 0.15, 0.25, 0.35, and 1.0) was tested for functionality as electrode materials for direct...
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Transport properties of LaSrNi1 − x ScxOy solid solutions
The formation of LaSrNiO 4 -and LaSrScO 4 -based solid solutions with the general stoichiometry LaSrNi 1 − x Sc x O 4 (0 < x < 1) has been studied in air at...
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LCAO Calculations of Perfect-crystal Properties
In the next three chapters we illustrate the possibilities of LCAO methods in the calculations of different crystalline-solid properties. -
Research on the electrochemistry of oxygen ion conductors in the former Soviet Union. II. Perovskite-related oxides
The review is devoted to the analysis of experimental results on electrochemical and physicochemical properties of the perovskite-related oxide...
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Oxygen vacancy ordering in La2− x SrxNiO4 − δ (0 ≤ ≤ 0.5): the crystal structure and defects investigated by neutron diffraction
The oxygen deficient and formally Ni 1+ -Ni 2+ mixed-valence La 2− x Sr x NiO 4− δ system has been studied by means of neutron diffraction. It is found that,...