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  • Wet electrospinning is a useful method for three-dimensional structure control of nanofibrous materials. This novel technology uses a liquid collector instead of a solid metal one commonly used for standard electrospinnig. The article compares internal structure features of polycaprolactone nanofibrous materials prepared by both technologies. We analyze the influence of various concentrations of chloroform/ethanol solvent and different water/ethanol composition used as a liquid collector. Electron scanning microphotographs have discovered a dual structure of wet electrospun materials composed of micro and nanofibers uniformly distributed across the sample bulk. We have shown that the full-faced twofold fiber distribution is caused by the solvent composition and is induced and enhanced by the increasing ethanol ratio in the liquid collector. The developed nanofibrous materials can find their application in tissue engineering, where the dual fiber diameter structure can offer better mechanical properties and first of all bigger pores preserving good cell adhesion thanks to the sufficient occurrence of nanofibers.
  • Wet electrospinning is a useful method for three-dimensional structure control of nanofibrous materials. This novel technology uses a liquid collector instead of a solid metal one commonly used for standard electrospinnig. The article compares internal structure features of polycaprolactone nanofibrous materials prepared by both technologies. We analyze the influence of various concentrations of chloroform/ethanol solvent and different water/ethanol composition used as a liquid collector. Electron scanning microphotographs have discovered a dual structure of wet electrospun materials composed of micro and nanofibers uniformly distributed across the sample bulk. We have shown that the full-faced twofold fiber distribution is caused by the solvent composition and is induced and enhanced by the increasing ethanol ratio in the liquid collector. The developed nanofibrous materials can find their application in tissue engineering, where the dual fiber diameter structure can offer better mechanical properties and first of all bigger pores preserving good cell adhesion thanks to the sufficient occurrence of nanofibers. (en)
Title
  • Wet Electrospinning of Polycaprolactone
  • Wet Electrospinning of Polycaprolactone (en)
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  • Wet Electrospinning of Polycaprolactone
  • Wet Electrospinning of Polycaprolactone (en)
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  • RIV/46747885:24410/13:#0001736!RIV14-MV0-24410___
http://linked.open...avai/riv/aktivita
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  • I, P(GAP208/12/0105), P(VG20102014049)
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  • 117258
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  • RIV/46747885:24410/13:#0001736
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  • Wet electrospinning, nanofibers (en)
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  • [EDD38EDAF162]
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  • Pokorný, Pavel
  • Lukáš, David
  • Košťáková, Eva
  • Seps, Michal
http://localhost/t...ganizacniJednotka
  • 24410
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