Search Results - "Rafailov, P.M."

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  1. 1

    Electrochemical and Raman measurements on single-walled carbon nanotubes by Stoll, M., Rafailov, P.M., Frenzel, W., Thomsen, C.

    Published in Chemical physics letters (10-07-2003)
    “…Electrochemical measurements were performed on a carbon nanotube mat as a working electrode using different salt solutions. The gravimetric capacitance of the…”
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  2. 2

    X-ray diffraction study of a Bi4Ge3O12 crystal by Milenov, T.I., Rafailov, P.M., Petrova, R., Kargin, Yu.F., Gospodinov, M.M.

    “…A Czochralski grown Bi4Ge3O12 crystal plate of (BGO) was examined by several X-ray diffraction methods. The crystal structure, lattice parameter and the atomic…”
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  3. 3

    Growth and characterization of LuVO4 single crystals by Dimitrov, D.Z., Rafailov, P.M., Chen, Y.F., Lee, C.S., Todorov, R., Juang, J.Y.

    Published in Journal of crystal growth (01-09-2017)
    “…•Large size high-quality LuVO4 single crystals.•Optical transparency and large birefringence.•Correct assignment of the first-order Raman active phonons. Large…”
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    Magnetic glass–ceramics containing multiferroic BiFeO3 crystals by Egorysheva, A.V., Milenov, T.I., Ellert, O.G., Avdeev, G.V., Rafailov, P.M., Efimov, N.N., Novotortsev, V.M.

    Published in Solid state sciences (01-02-2015)
    “…A new composite material consisting of BiFeO3 crystallites inside a nonmagnetic glass-like matrix has been synthesized using the glass crystallization method…”
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    Magnetic behavior of La2CoMnO6−δ crystal doped with Pb and Pt by Milenov, T.I., Rafailov, P.M., Urcelay-Olabarria, I., Ressouche, E., García-Muñoz, J.L., Skumryev, V., Gospodinov, M.M.

    Published in Materials research bulletin (01-12-2012)
    “…[Display omitted] ► We present results on the growth of bulk La2CoMnO6 crystals doped with Pb and Pt. ► Crystals were characterized by EDXA, magnetic…”
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  8. 8

    Magnetic behavior of La{sub 2}CoMnO{sub 6−δ} crystal doped with Pb and Pt by Milenov, T.I., European Polytechnical University, 23 St. Cyril and Methodius Str., 2300 Pernik, Rafailov, P.M., Urcelay-Olabarria, I., Ressouche, E., García-Muñoz, J.L., Skumryev, V., Gospodinov, M.M.

    Published in Materials research bulletin (15-12-2012)
    “…Graphical abstract: Display Omitted Highlights: ► We present results on the growth of bulk La{sub 2}CoMnO{sub 6} crystals doped with Pb and Pt. ► Crystals were…”
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  9. 9

    Raman and optical spectroscopy characteristics of Se-doped Bi 12SiO 20 crystals by Milenov, T.I., Rafailov, P.M., Thomsen, C., Egorysheva, A., Titorenkova, R., Kostova, B., Skorikov, V.

    Published in Optical materials (2011)
    “…► Growth of Bi 12SiO 20 crystals doped with Se. ► Doping Se ions enter tetrahedral positions replacing 3Si 4+ by (Se 6++ 2Fe 3+) ions. ► Changes in the lattice…”
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  10. 10

    Lattice distortions in a Bi 12 SiO 20 crystal caused by doping with copper by Egorysheva, A.V., Milenov, T.I., Rafailov, P.M., Thomsen, C., Petrova, R., Skorikov, V.M., Gospodinov, M.M.

    Published in Solid state communications (2009)
    “…Bi 12SiO 20 crystals doped with Cu were grown by the Czochralski method along 〈 001 〉 from a melt. The concentration of the impurities was determined by…”
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  11. 11

    Growth and characterization of La 2CoMnO 6 crystals doped with Pb by Milenov, T.I., Rafailov, P.M., Abrashev, M.V., Nikolova, R.P., Nakatsuka, A., Avdeev, G.V., Veleva, M.N., Dobreva, S., Yankova, L., Gospodinov, M.M.

    “…Crystals of La 2CoMnO 6 doped with Pb were grown by the high temperature solution growth method. Several crystals were examined by scanning electron microscopy…”
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  12. 12

    X-ray diffraction study of a Bi 4Ge 3O 12 crystal by Milenov, T.I., Rafailov, P.M., Petrova, R., Kargin, Yu.F., Gospodinov, M.M.

    “…A Czochralski grown Bi 4Ge 3O 12 crystal plate of (BGO) was examined by several X-ray diffraction methods. The crystal structure, lattice parameter and the…”
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  13. 13

    Growth and characterization of La2CoMnO6 crystals doped with Pb by Milenov, T.I., Rafailov, P.M., Abrashev, M.V., Nikolova, R.P., Nakatsuka, A., Avdeev, G.V., Veleva, M.N., Dobreva, S., Yankova, L., Gospodinov, M.M.

    “…Crystals of La2CoMnO6 doped with Pb were grown by the high temperature solution growth method. Several crystals were examined by scanning electron microscopy…”
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  14. 14

    Lattice distortions in a crystal caused by doping with copper by Egorysheva, A.V., Milenov, T.I., Rafailov, P.M., Thomsen, C., Petrova, R., Skorikov, V.M., Gospodinov, M.M.

    Published in Solid state communications (01-10-2009)
    “…Bi(12)SiO(20) crystals doped with Cu were grown by the Czochralski method along [left angle bracket]001[right-pointing angle bracket] from a melt. The…”
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  15. 15

    Luminescence and Raman spectroscopy on MgB 2 by Rafailov, P.M, Dworzak, M, Thomsen, C

    Published in Solid state communications (2002)
    “…From a comparison of luminescence and Raman measurements on MgB 2-ceramics, we ascribe the broad and intense background in the Raman spectra to a luminescence…”
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  16. 16

    X-ray diffraction topography observations of the core in Bi 12SiO 20 crystals doped with Mn by Milenov, T.I, Botev, P.A, Rafailov, P.M, Gospodinov, M.M

    “…The core region in a bismuth silicate—Bi 12SiO 20 (BSO) crystal doped with Mn was examined by X-ray double-crystal diffraction topography. Specific features…”
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    Intermolecular Interaction in Carbon Nanotube Ropes by Thomsen, C., Reich, S., Goñi, A. R., Jantoljak, H., Rafailov, P. M., Loa, I., Syassen, K., Journet, C., Bernier, P.

    Published in physica status solidi (b) (01-09-1999)
    “…Using Raman spectroscopy we determined the van‐der‐Waals component of the low‐frequency vibration in ropes of single‐walled nanotubes at 171 cm—1. While Raman…”
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  20. 20

    Low temperature phase transition in n-pentane C 60 clathrate: a Raman scattering study by Rafailov, P.M, Hadjiev, V.G, Thomsen, C, Kamarás, K, Pekker, S

    Published in Chemical physics letters (11-08-2000)
    “…We present results on Raman scattering from a C 60.n-pentane (C 60.(n- C 5 H 12) 0.88( C 7 H 8) 0.05) clathrate crystal in the range 20–300 K. The Raman…”
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