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S. V. Baryshnikov

Researcher at Pedagogical University

Publications -  62
Citations -  486

S. V. Baryshnikov is an academic researcher from Pedagogical University. The author has contributed to research in topics: Ferroelectricity & Dielectric. The author has an hindex of 14, co-authored 52 publications receiving 447 citations.

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Coexistence of melted and ferroelectric states in sodium nitrite within mesoporous sieves

TL;DR: In this article, the authors measured 23 Na spin-lattice relaxation and line shape in a large temperature range up to 535 K covering the bulk ferroelectric phase transition point.
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Dielectric and NMR Studies of Nanoporous Matrices Loaded with Sodium Nitrite

TL;DR: In this paper, the spin-lattice relaxation rate and 23Na NMR line shape were measured within a broad temperature interval including the ferroelectric phase transition in bulk NaNO2, and two different phases of sodium nitrite, the crystalline and melt phases, were shown to coexist under conditions of a restricted geometry.
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Dielectric and calorimetric investigations of KNO 3 in pores of nanoporous silica matrices MCM-41

TL;DR: In this article, the temperature dependences of the linear dielectric permittivity, the third harmonic amplitude, and the heat capacity of nanoporous silica matrices MCM-41 with cellular channels (3.7 and 2.6 nm in diameter) filled with KNO3 have been investigated in comparison with those obtained for bulk potassium nitrate.
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NMR studies of structure and ferroelectricity for Rochelle salt nanoparticles embedded in mesoporous sieves

TL;DR: In this article, NMR studies were carried out for Rochelle salt embedded in molecular sieves and the major part of particles within nanopores had a structure similar to that of bulk Rochelle salts.
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Effect of confined geometry on linear and nonlinear dielectric properties of triglycine sulfate near the phase transition

TL;DR: In this paper, the temperature dependence of the linear permittivity and the third harmonic generation amplitude of nanocomposites representing nanoporous silica matrices (opal matrix and SBA-15) with triglycine sulfate embedded in pores has been studied in the region of the ferroelectric phase transition.