Search Results - "Ulikhin, A. S."
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Effect of the Nature of a Heterogeneous Dopant on the Transport and Thermodynamic Properties of Composites Based on n-Methyl-n-Butylpiperidinium Tetrafluoroborate
Published in Russian journal of electrochemistry (2024)“…Composite solid electrolytes based on n -methyl- n -butylpiperidinium tetrafluoroborate [(CH 3 )(C 4 H 9 )C 5 H 10 N]BF 4 –A (where A is γ-Al 2 O 3 , SiO 2 )…”
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Ionic Conductivity of LiTi2(PO4)3–LiClO4 Composites
Published in Russian journal of electrochemistry (2022)“…Composite solid electrolytes (1 – х )LiTi 2 (PO 4 ) 3 – x LiClO 4 are synthesized and their conducting properties are studied. Heterogeneous doping of LiTi 2…”
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Temperature-Phase Dependence of the Vibration Spectrum and Orientation Mobility of the Tetrafluoroborate Ion in n-Bu4NBF4 Organic Salt
Published in Physics of the solid state (01-12-2018)“…The structural and dynamic properties of a tetrafluoroborate ion in n -Bu 4 NBF 4 organic salt at different temperatures and phase states were studied by…”
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Comparative study of the ion conductivities of substituted tetrabutylammonium salts (C4H9)4N]BF4 and [(C4H9)4N]Br
Published in Russian journal of electrochemistry (01-08-2017)“…The ion conductivity of the salts [(C 4 H 9 ) 4 N]BF 4 and [(C 4 H 9 ) 4 N]Br was studied in vacuum at temperatures from room temperature to 190 and 135°C,…”
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Ionic mobility and electrophysical properties of solid solutions in PbF2–SbF3 and PbF2–SnF2–SbF3 systems
Published in Russian journal of electrochemistry (01-08-2017)“…Ionic mobility and electrical conductivity of solid solutions with fluorite structure, obtained with solid-state approach in PbF 2 –SbF 3 and PbF 2 –SnF 2 –SbF…”
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6
Physicochemical properties of (CH3)2NH2Cl–Al2O3 composites
Published in Russian journal of electrochemistry (01-08-2017)“…Composite solid electrolytes were synthesized from the organic salt dimethylammonium chloride (1– x )C 2 H 8 NCl– x Al 2 O 3 . Their physicochemical properties…”
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Ion mobility and conductivity in solid solutions in the KBiF4–ZrF4 system
Published in Russian journal of electrochemistry (01-06-2015)“…The ion mobility and conductivity in solid solutions with the fluorite structure (100– x )KBiF 4 + xZrF 4 , where x = 2.5–15 mol %, is studied by the methods…”
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Preparation, crystal structure, and electrical conductivity of the solid electrolyte Zr0.86Sc0.12Y0.02O1.93
Published in Inorganic materials (01-08-2011)“…The solid electrolyte Zr 0.88 Sc 0.12 Y 0.02 O 1.93 for reduced-temperature SOFCs has been characterized by Rietveld X-ray powder diffraction analysis and…”
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9
Conductivity of the nanostructured ceramic material Zr0.88Sc0.1Ce0.01Y0.01O1.955 prepared from mechanically activated powders
Published in Inorganic materials (2009)“…The structure of the Zr 0.88 Sc 0.1 Ce 0.01 Y 0.01 O 1.955 solid solution, a candidate for the use as a solid electrolyte in fuel cells with a low temperature,…”
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10
Ion mobility and transport properties of fluorite-type solid solutions in the PbF2–BiF3–MF systems (M=Rb, Cs) according to NMR and conductivity data
Published in Solid state ionics (01-04-2014)“…Ion mobility and transport properties of the fluorite-type solid solutions 50PbF2–30BiF3–20RbF, 50PbF2–30BiF3–20CsF and 50PbF2–25BiF3–25CsF were studied by 19F…”
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11
Ion mobility and transport properties of fluorite-type solid solutions in the PbF sub(2)-BiF sub(3)-MF systems (M = Rb, Cs) according to NMR and conductivity data
Published in Solid state ionics (01-04-2014)“…Ion mobility and transport properties of the fluorite-type solid solutions 50PbF sub(2)-30BiF sub(3)-20RbF, 50PbF sub(2)-30BiF sub(3)-20CsF and 50PbF…”
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12
Cathodic materials for intermediate-temperature solid oxide fuel cells based on praseodymium nickelates-cobaltites
Published in Russian journal of electrochemistry (01-07-2014)“…A unique combination of methods (TPD of O 2 , thermogravimetry, isotopic heteroexchange of oxygen in different modes) was used to carry out detailed studies of…”
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13
Ionic conductivity in orientationally disordered phases
Published in Russian journal of electrochemistry (01-04-2011)“…The properties of orientationally disordered phases (ODPs) and primarily systems based on alkali metal perchlorates and nitrates studied earlier are reviewed…”
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Ionic mobility and conduction in the 50PbF2 · 30BiF3 · 20NaF solid solution studied by NMR and impedance spectroscopy
Published in Inorganic materials (01-11-2013)“…Ionic mobility and electrical transport in the 50PbF 2 · 30BiF 3 · 20NaF fluorite solid solution have been studied by 19 F and 23 Na NMR and impedance…”
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NMR, DTA, and impedance spectroscopy studies of ion mobility, phase transitions, and ionic conductivity in K1 − x(NH4)xSbF4 crystals
Published in Russian journal of electrochemistry (2013)“…The ion mobility, phase transitions, and ionic conductivity in the crystal phases in the KF-NH 4 F-SbF 3 system were studied by NMR, DTA, and impedance…”
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17
Proton mobility in complex [RhL4Cl2]HSO4 · nH2SO4 · mH2O salts (L = Py, γ-picoline)
Published in Russian journal of electrochemistry (01-05-2011)“…The method of deposition from solutions was used to synthesize [Rh L 4 Cl 2 ]HSO 4 · n H 2 SO 4 · m H 2 O complex salts ( L = Py, γ-picoline), n ≈ 0.5−0.6, m ≈…”
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18
Design of medium–temperature solid oxide fuel cells on porous supports of deformation strengthened Ni–Al alloy
Published in Russian journal of electrochemistry (01-04-2011)“…An approach was developed towards design of medium-temperature solid-oxide fuel cells based on a deformation strengthened Ni-Al alloy. Methods of sintering…”
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Studies of oxygen transport mechanism in electrolytes based on doped lanthanum silicate with apatite structure using techniques of oxygen isotopic heteroexchange and impedance spectroscopy
Published in Russian journal of electrochemistry (01-04-2011)“…The work presents the results of studying the mechanism of oxygen transport for a new promising class of oxygen-containing electrolytes based on lanthanum…”
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20
Solid-state electrochemical lithium cells with oxide electrodes and composite solid electrolyte
Published in Russian journal of electrochemistry (01-05-2007)Get full text
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