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Preparation of highly crystalline titanium-based ceramic microfibers from polymer precursor blend by needle-less electrospinning
Authors:I Shepa  E Mudra  M Vojtko  P Tatarko  V Girman  O Milkovic  T Sopcak  V Medvecka  J Dusza
Affiliation:1. Institute of Materials Research, Slovak Academy of Sciences, Watsonova 47, 04 0 01 Kosice, Slovak Republic;2. Faciulty of Materials, Metallurgy and Recycling, Technical university of Ko?ice, Letná 9, 040 01 Kosice, Slovak Republic;3. Institute of Physics, Faculty of Science P.J. Safarik University, Park Angelinum 9, 041 54 Kosice, Slovak Republic;4. Institute of Inorganic Chemistry, Slovak Academy of Sciences, Dúbravská cesta 9, 845 36 Bratislava 45, Slovak Republic;5. Faculty of Mathematics, Physics and Informatics, Comenius University, Mlynska dolina F2, 842 48 Bratislava, Slovak Republic
Abstract:The aim of the present contribution is to study the influence of the post-spinning heat - treatment of single TiO2/PVP precursor fibers on the properties and morphology of the final titanium-based microfibers. The post-spinning treatment conditions were: calcination in air at 450–600?°C and pyrolysis in argon at 1000–1700?°C. Calcination resulted in a production of anatase-rich and pure rutile fibers. The use of an alternative sintering method, the low-temperature plasma treatment, led to the crystallization of the composite Magnéli phases/polymer fibers. As a result of the same one precursor, pyrolysis at 1000?°C, the Carbon/TiO2 composite fibers were obtained. Rising the treatment temperature in inert atmosphere led to the formation of the titanium carbide fibers. The formation process and all the obtained products were characterized by differential scanning calorimetry accompanied with thermogravimetric analysis (DSC/TGA), scanning and transmission electron microscopy (SEM, TEM), X-ray diffraction (XRD), and image analysis techniques.
Keywords:Electrospinning  Ceramic fibers  Titanium dioxide fibers  Titanium carbide
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