Preparation of Silk Fibroin Nanofibres by Needleless Electrospinning Using Formic Acid-Calcium Chloride as the Solvent

In this study, silk nanofibre sheets were prepared by a needleless electrospinning from silk fibroin in a mixture of formic acid and calcium chloride. The influences of the concentration of calcium chloride on the properties of spinning solution, morphology of the silk electrospun fibres and the spi...

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Published inApplied Mechanics and Materials Vol. 848; no. Technology and Innovation for Sustainable Development; pp. 203 - 206
Main Authors Martinová, Lenka, Sasithorn, Nongnut, Mongkholrattanasit, Rattanaphol
Format Journal Article
LanguageEnglish
Published Zurich Trans Tech Publications Ltd 27.07.2016
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Abstract In this study, silk nanofibre sheets were prepared by a needleless electrospinning from silk fibroin in a mixture of formic acid and calcium chloride. The influences of the concentration of calcium chloride on the properties of spinning solution, morphology of the silk electrospun fibres and the spinning performance of the spinning process were examined. The results show that calcium chloride can improve the solubility of silk fibroin in formic acid. The morphology of electrospun fibres was characterized by a scanning electron microscope (SEM), which indicates that the morphology of obtained fibres was influenced by the weight ratio of silk fibre to calcium chloride in the spinning solution. It was observed that the concentration of calcium chloride in the spinning solution influenced the diameter of the silk electrospun fibres, with an increase in the concentration of calcium chloride increasing the diameters of the electrospun fibres. The silk nanofibres had diameters ranging from 440 to 1900 nm. However, increasing the concentration of calcium chloride in the spinning solution had a less influence on the spinning performance of electrospinning process.
AbstractList In this study, silk nanofibre sheets were prepared by a needleless electrospinning from silk fibroin in a mixture of formic acid and calcium chloride. The influences of the concentration of calcium chloride on the properties of spinning solution, morphology of the silk electrospun fibres and the spinning performance of the spinning process were examined. The results show that calcium chloride can improve the solubility of silk fibroin in formic acid. The morphology of electrospun fibres was characterized by a scanning electron microscope (SEM), which indicates that the morphology of obtained fibres was influenced by the weight ratio of silk fibre to calcium chloride in the spinning solution. It was observed that the concentration of calcium chloride in the spinning solution influenced the diameter of the silk electrospun fibres, with an increase in the concentration of calcium chloride increasing the diameters of the electrospun fibres. The silk nanofibres had diameters ranging from 440 to 1900 nm. However, increasing the concentration of calcium chloride in the spinning solution had a less influence on the spinning performance of electrospinning process.
Author Sasithorn, Nongnut
Martinová, Lenka
Mongkholrattanasit, Rattanaphol
Author_xml – givenname: Lenka
  surname: Martinová
  fullname: Martinová, Lenka
  email: lenka.martinova@tul.cz
  organization: Technical University of Liberec : Institute for Nanomaterials, Advanced Technology and Innovation
– givenname: Nongnut
  surname: Sasithorn
  fullname: Sasithorn, Nongnut
  email: nongnut.s@rmutp.ac.th
  organization: Technical University of Liberec : Department of Nonwovens and Nanofibrous Materials, Faculty of Textile Engineering
– givenname: Rattanaphol
  surname: Mongkholrattanasit
  fullname: Mongkholrattanasit, Rattanaphol
  email: rattanaphol.m@rmutp.ac.th
  organization: Rajamangala University of Technology Phra Nakhon : Department of Textile Chemistry Technology, Faculty of Industrial Textiles and Fashion Design
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Keywords Needleless Electrospinning
Calcium Chloride
Silk Electrospun Fibres
Formic Acid
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Snippet In this study, silk nanofibre sheets were prepared by a needleless electrospinning from silk fibroin in a mixture of formic acid and calcium chloride. The...
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SubjectTerms Calcium chloride
Electrospinning
Fibers
Nanofibers
Scanning electron microscopy
Silk
Silk fibroin
Spinning
Title Preparation of Silk Fibroin Nanofibres by Needleless Electrospinning Using Formic Acid-Calcium Chloride as the Solvent
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