Search Results - "PALNICHENKO, A. V"

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    Direct Observation of Pinning of Abrikosov Vortices in a Specially Inhomogenious Crystal EuRbFe4As4 by Sidelnikov, M. S., Palnichenko, A. V., Pervakov, K. S., Vlasenko, V. A., Zverkova, I. I., Uspenskaya, L. S., Pudalov, V. M., Vinnikov, L. Ya

    Published in JETP letters (01-04-2024)
    “…In the two-phase crystal EuRbFe 4 As 4 /EuFe 2 As 2 (1144/122), a linear ordering of Abrikosov vortices, uncharacteristic for superconducting pnictides, has…”
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    Diamond formation by thermal activation of graphite by Charlier, J.-C, Palnichenko, A. V, Jonas, A. M, Aronin, A. S, Issi, J.-P

    Published in Nature (London) (11-11-1999)
    “…Synthetic diamond is used in applications ranging from abrasives, tool coatings, bearing surfaces, microelectronics and optics to corrosion protection. The…”
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    Superconducting-like behavior of Bi/Bi2O3 interface by Palnichenko, A.V., Mazilkin, A.A., Rybchenko, O.G., Shakhrai, D.V., Vyaselev, O.M.

    Published in Physica. C, Superconductivity (15-04-2020)
    “…•Bi/Bi2O3 interface was formed by surface oxidation of Bi.•Magnetic susceptibility and electrical resistance of the interface were studied.•Superconductivity…”
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    Superconductivity in Mg/MgO interface by Sidorov, N.S., Palnichenko, A.V., Vyaselev, O.M.

    Published in Physica. C, Superconductivity (01-10-2012)
    “…► Mg/MgO interface superconducting at ∼50K was formed by surface oxidation of Mg. ► The ac susceptibility and electrical resistance of the interface were…”
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    Superconductivity in the metallic–oxidized copper interface by Sidorov, N.S., Palnichenko, A.V., Khasanov, S.S.

    Published in Physica. C, Superconductivity (01-04-2011)
    “…► Superconductivity at 20–90 K was found in the copper–copper oxides interfaces. ► The interfaces were formed by partial oxidation of copper powder. ► The…”
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    Metastable superconductivity of Mo/MoO3−x interface by Palnichenko, A.V., Zver‘kova, I.I., Shakhrai, D.V., Vyaselev, O.M.

    Published in Physica. C, Superconductivity (15-03-2019)
    “…•Mo/MoO3−x interface was formed by surface oxidation of Mo.•Magnetic susceptibility and electrical resistance of the interface was studied.•Superconductivity…”
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    Superconductivity in the metallic–oxidized sodium interface by Sidorov, N.S., Palnichenko, A.V., Khasanov, S.S.

    Published in Solid state communications (01-08-2010)
    “…Superconductivity at 20–34 K in the interface formed by metallic and oxidized sodium has been observed by ac magnetic susceptibility measurements. By means of…”
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    Superconductivity of Mg/MgO interface formed by shock-wave pressure by Sidorov, N.S., Palnichenko, A.V., Shakhrai, D.V., Avdonin, V.V., Vyaselev, O.M., Khasanov, S.S.

    Published in Physica. C, Superconductivity (15-05-2013)
    “…► Mg/MgO interface superconducting at ∼30K was formed by shock-pressure technique. ► Dynamic magnetic susceptibility of the interface was studied. ► Glassy…”
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    Superconductivity in the metallic–oxidized iron interface by Sidorov, N.S., Palnichenko, A.V., Zver’kova, I.I.

    Published in Physica. C, Superconductivity (01-07-2011)
    “…► Indication of superconductivity at 100–125 K was found in the Fe–FeO x interfaces. ► The interfaces were formed by reduction of α-Fe 2O 3 with H 2. ► The FeO…”
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    Superconductivity at 50 K in a mixed-phase Ca–P–O compound system treated by shock-wave pressure up to 65 GPa by Sidorov, N.S., Palnichenko, A.V., Avdonin, V.V., Shakhrai, D.V., Rybchenko, O.G., Khasanov, S.S., Sakharov, M.K.

    Published in Solid state communications (01-07-2010)
    “…Shock-wave pressure treatment up to 65 GPa has been applied to samples representing powdered mixtures of calcium and calcium phosphate in 1:1 volume ratio…”
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    Superconductivity at 125 K in the Metallic–Oxidized Iron Interface by Sidorov, N. S., Palnichenko, A. V., Zver’kova, I. I.

    “…Superconductivity at ≈125 K in the interface formed by metallic and oxidized iron has been assumed by means of magnetometric measurements. From X-ray…”
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    Synthesis of ß-FeSe by 2-propanol solvothermal method by Palnichenko, A V, Zver'kova, I I

    Published in Physica. C, Superconductivity (15-12-2021)
    “…Using elemental iron and selenium as well as NH4Cl and 2-propanol as starting materials, a low temperature (473 K) method of solvothermal synthesis of β–FeSe…”
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    Intercalation of C60 fullerene crystals with calcium and barium via self-propagating high-temperature synthesis by Sidorov, N. S., Palnichenko, A. V., Rybchenko, O. G., Khasanov, S. S.

    Published in Inorganic materials (01-05-2010)
    “…We report a process for rapid intercalation of C 60 fullerene crystals using self-propagating high-temperature synthesis. The process has been used to…”
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    Superconductivity of Calcium C60 Intercalation Compound Synthesized by Shock-Wave Pressure by Ossipyan, Yu. A., Sidorov, N. S., Palnichenko, A. V., Vyaselev, O. M., Kartsovnik, M. V., Opel, M., Avdonin, V. V., Shakhrai, D. V., Fortov, V. E.

    “…The C 60 fullerite has been Ca-intercalated under high pressure up to 240 kbar induced by a pressure shock wave. Magnetometric measurements have revealed…”
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    Synthesis of superconducting (Li,Fe)OHFeSe by 2-propanol-assisted solvothermal method by Palnichenko, A.V., Zver‘kova, I.I.

    Published in Physica. C, Superconductivity (15-07-2023)
    “…(Li,Fe)OHFeSe superconducting at Tc≃40K has been synthesized by 2-propanol-assisted solvothermal synthetic route. Relatively low-temperature (363–373K)…”
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    Synthesis of β-FeSe by 2-propanol solvothermal method by Palnichenko, A.V., Zver‘kova, I.I.

    Published in Physica. C, Superconductivity (15-12-2021)
    “…•β-FeSe was synthesized by solvothermal method.•Magnetic susceptibility and phase composition were studied.•Superconductivity at 8 K was observed.•The…”
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    Synthesis of wustite nanowires by carbon plasma pulse assisted method by Palnichenko, A.V., Rossolenko, A.N., Kopylov, V.N., Zver’kova, I.I., Aronin, A.S.

    Published in Chemical physics letters (20-07-2005)
    “…A synthesis of wustite (FeO) nanowires has been performed based on the method of carbon plasma pulse assisted chemical reduction of magnetite (Fe 3O 4)…”
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