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Bile acid bearing poly (vinyl chloride) nanofibers by combination of CuAAC click chemistry and electrospinning process

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Altınkök, Çağatay
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Elsevier BV

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Abstract This study aims to deposit most common bile acids such as lithocholic acid (LCA) and chenodeoxycholic acid (CDCA) bearing poly (vinyl chloride) nanofiber (PVC-LCA and PVC-CDCA) coatings on glass slides surface using a combination method by employing copper (I)-catalyzed azide-alkyne cycloaddition ‘click’ reaction (CuAAC), followed by electrospinning process. The resulted nanofibers and their intermediates were characterized by spectroscopic (FT-IR- 1H-NMR), thermal (TGA and DSC), wettability (WCA) and morphological (SEM) analyses. Many characterizations revealed that the bile acid functionalized PVC-LCA and PVC-CDCA are successfully achieved by CuAAC between azido-functional PVC (PVC-N3) and alkyne end-functional LCA and CDCA (LCA-Alkyne and CDCA-Alkyne) and their nanofibers obtained by electrospinning showed efficiently improved thermal behavior, hydrophilicity and morphological features compared to pristine PVC or their granule analogues. Furthermore, the SEM images indicate that the formation of nanoscale, uniform, cylindrical and smooth fibers without free beads. The changeable properties achieved are attributed to the presence of rigid steroid skeleton, triazole rings and free –OH groups on the final polymers. Hence, it is clear that this facile combination procedure is encouraging for scientists working on potential biomedical PVC applications.

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Materials Today Communications

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2352-4928

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CLOSED

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Poly (Vinyl Chloride), Fibers, Electrospinning, Diameter, Copper (I)-Catalyzed Azide-Alkyne Cycloaddition, Copolymers, Thermal-Degradation, Bile Acid, Polymer Synthesis, Polypropylene

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