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Search for "electrospun nanofibers" in Full Text gives 27 result(s) in Beilstein Journal of Nanotechnology.

Improved lithium-ion battery anode capacity with a network of easily fabricated spindle-like carbon nanofibers

  • Mengting Liu,
  • Wenhe Xie,
  • Lili Gu,
  • Tianfeng Qin,
  • Xiaoyi Hou and
  • Deyan He

Beilstein J. Nanotechnol. 2016, 7, 1289–1295, doi:10.3762/bjnano.7.120

Graphical Abstract
  • spindle-like beads on the electrospun nanofibers depends mainly on the viscosity and surface tension of the spinning solution, spinning voltage and receving distance [24][25]. Viewed as a whole, these beaded nanofibers are closely entangled with each other and develop a robust multilayer network, which
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Published 14 Sep 2016

Oxygen-plasma-modified biomimetic nanofibrous scaffolds for enhanced compatibility of cardiovascular implants

  • Anna Maria Pappa,
  • Varvara Karagkiozaki,
  • Silke Krol,
  • Spyros Kassavetis,
  • Dimitris Konstantinou,
  • Charalampos Pitsalidis,
  • Lazaros Tzounis,
  • Nikos Pliatsikas and
  • Stergios Logothetidis

Beilstein J. Nanotechnol. 2015, 6, 254–262, doi:10.3762/bjnano.6.24

Graphical Abstract
  • of these biomimetic tissue-engineering constructs as efficient coatings for enhanced compatibility of cardiovascular implants. Keywords: cardiovascular implants; electrospun nanofibers; plasma treatment; scaffold; tissue engineering; Introduction Cardiovascular diseases represent one of the major
  • hydrophobic character [19]. To date, several surface-engineering techniques have been applied in order to chemically modify surfaces of electrospun nanofibers [9][20][21][22], including treatments by flame, corona discharge, plasma, photons, electron beam, ion beam, X-rays, and gamma rays. Among them
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Published 22 Jan 2015
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