B
Boriana Mihailova
Researcher at University of Hamburg
Publications - 193
Citations - 3527
Boriana Mihailova is an academic researcher from University of Hamburg. The author has contributed to research in topics: Raman spectroscopy & Raman scattering. The author has an hindex of 31, co-authored 179 publications receiving 3041 citations. Previous affiliations of Boriana Mihailova include University of Paris-Sud & Bulgarian Academy of Sciences.
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Chemical surface alteration of biodegradable magnesium exposed to corrosion media
Regine Willumeit,Janine Fischer,Frank Feyerabend,Norbert Hort,Ulrich Bismayer,Stefanie Heidrich,Boriana Mihailova +6 more
TL;DR: In this paper, high-resolution electron-induced X-ray emission spectroscopy and infrared reflection microspectroscopy revealed a complex structure of the formed corrosion layer and the presence of CO(2) in concentrations close to that in blood is significant for the chemistry of the oxidised layer.
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Aging effects on the nucleation and crystallization kinetics of colloidal TPA-silicalite-1
TL;DR: In this paper, the effects of aging on the nucleation kinetics for the synthesis of nanosized TPA-silicalite-1 with various silica sources, including tetraethoxysilane (TEOS) and amorphous silica Ludox TM, were investigated.
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Zeolite Beta nanosized assemblies
TL;DR: In this article, a steam assisted conversion (SAC) method was used to extract nanocrystals from micron-sized porous amorphous silica grains in clear solutions containing the alumina source and organic template.
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Stress, strain and Raman shifts
TL;DR: In this paper, the concept of the phonon-mode Grüneisen tensor is reviewed as method to determine the elastic strains across crystals from the changes in the wavenumbers of Raman-active phonon modes relative to an unstrained crystal.
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The nucleation period for crystallization of colloidal TPA-silicalite-1 with varying silica source
TL;DR: The effect of varying silica source on the nucleation and crystallization of TPA-silicalite-1 was investigated in this article, where a direct experimental method, involving a two-stage varying-temperature synthesis, was used to determine the time of nucleation for colloidal crystals with different silica sources, including tetraethoxysilane (TEOS) and amorphous silica (Ludox TM and Ludox LS).