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Properties of the nanoparticles prepared by seeded-growth method and their interaction with a protein

  1. Title statementProperties of the nanoparticles prepared by seeded-growth method and their interaction with a protein [rukopis] / Iveta Vilímová
    Additional Variant TitlesVlastnosti nanočástic připravených růstem ze zárodků a jejich interakce s bílkovinou
    Personal name Vilímová, Iveta (dissertant)
    Translated titleProperties of the nanoparticles prepared by seeded-growth method and their interaction with a protein
    Issue data2019
    Phys.des.91 s.
    NoteVed. práce Karolína Šišková
    Oponent Blanka Vlčková
    Another responsib. Šišková, Karolína (thesis advisor)
    Vlčková, Blanka, (opponent)
    Another responsib. Univerzita Palackého. Katedra experimentální fyziky (degree grantor)
    Form, Genre diplomové práce master's theses
    UDC (043)378.2
    CountryČesko
    Languageangličtina
    Document kindPUBLIKAČNÍ ČINNOST
    TitleMgr.
    Degree programNavazující
    Degree programFyzika
    Degreee disciplineNanotechnologie
    book

    book

    Kvalifikační práceDownloadedSizedatum zpřístupnění
    00227990-331998156.pdf03.2 MB31.12.2999
    PosudekTyp posudku
    00227990-ved-961748552.pdfPosudek vedoucího
    00227990-opon-785810044.pdfPosudek oponenta

    This work is focused on two-step synthesis of metal core-shell NPs prepared via seeded-growth method exploiting freshly or previously prepared seeds. The as-prepared colloidal systems of NPs are characterized using UV Vis spectroscopy, transmission electron microscopy (TEM), dynamic light scattering (DLS), and measurement of zeta-potential values. The direct influence of synthetic parameters and conditions on the characteristic properties of core-shell NPs consisting of the same (Ag-Ag NPs) or different (Au-Ag) plasmonic metal is demonstrated. The ability of the selected colloidal systems to enhance Raman scattering after the interaction with the selected protein, bovine serum, is tested out with surface-enhanced Raman spectroscopy (SERS) at two different excitation laser lines (532 and 785 nm).This work is focused on two-step synthesis of metal core-shell NPs prepared via seeded-growth method exploiting freshly or previously prepared seeds. The as-prepared colloidal systems of NPs are characterized using UV Vis spectroscopy, transmission electron microscopy (TEM), dynamic light scattering (DLS), and measurement of zeta-potential values. The direct influence of synthetic parameters and conditions on the characteristic properties of core-shell NPs consisting of the same (Ag-Ag NPs) or different (Au-Ag) plasmonic metal is demonstrated. The ability of the selected colloidal systems to enhance Raman scattering after the interaction with the selected protein, bovine serum, is tested out with surface-enhanced Raman spectroscopy (SERS) at two different excitation laser lines (532 and 785 nm).

Number of the records: 1  

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