Publications by authors named "N V Lyskov"

Article Synopsis
  • δ-BiO-based materials are studied for their potential use in solid oxide fuel cells due to their high electrical conductivity and thermal stability.
  • Extensive research on BiWO compounds explored their thermal stability, polymorphism, and conduction properties, revealing that these materials are dense and thermally stable up to 900 °C.
  • The study combined theoretical and experimental approaches to analyze electrical transport mechanisms, confirming that the predominant conduction type in BiWO is anionic, achieving significant conductivity values at high temperatures.
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The conductive properties of fluorite-like structures KLnMoOF (Ln = La, Pr, Nd: KLM, KPM, KNM) have been studied theoretically and experimentally. Theoretical studies included the geometrical-topological analysis of voids and channels available for migration of working ions; bond valence site energy calculations of the oxygen ions' migration energy; quantum-chemical calculations for the estimation of the oxygen vacancies formation energy. Experimental measurements of conductivity were made using impedance spectroscopy and as a function of oxygen partial pressure.

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A combination of the unique porous structure and physical and chemical properties of anodic aluminum oxide (AAO) makes it widely used in cutting-edge areas of materials science and nanotechnology. Selenic acid electrolyte provides the ability to obtain AAO with low porosity and high optical transparency and thus is promising for the preparation of AAO photonic crystals (PhCs). Here, we show the influence of crystallographic orientation of Al on the electrochemical oxidation rate in 1 M HSeO as well as on the growth rate, porosity, and the effective refractive index of AAO.

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The anodizing of aluminium under oscillating conditions is a versatile and reproducible method for the preparation of one-dimensional photonic crystals (PhCs). Many anodizing parameters have been optimised to improve the optical properties of anodic aluminium oxide (AAO) PhCs. However, the influence of the crystallographic orientation of an Al substrate on the characteristics of AAO PhCs has not been considered yet.

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The influence of different synthesis routes on the structure and luminescent properties of KTb(MoO) (KTMO) was studied. KTMO samples were prepared by solid-state, hydrothermal, and Czochralski techniques. These methods lead to the following different crystal structures: a triclinic scheelite-type α-phase is the result for the solid-state method, and an orthorhombic KY(MoO)-type γ-phase is the result for the hydrothermal and Czochralski techniques.

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