4.6 Article

Structural Evolution and Formation Mechanism of the Soft Colloidal Arrays in the Core of PAAm Nanofibers by Electrospun Packing

Journal

LANGMUIR
Volume 33, Issue 39, Pages 10291-10301

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.langmuir.7b02275

Keywords

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Funding

  1. National Natural Science Foundation of China [21104058, 31200719, 21134004, 21174103]
  2. State Scholarship Fund of China Scholarship Council [201508120037]
  3. Applied Basic Research and Advanced Technology Programs of Science and Technology Commission Foundation of Tianjin [12JCQNJC01400, 15JCYBJC18300]
  4. Science and Technology Correspondent of Tianjin [14JCTPJC00502, 15JCPJC62200]
  5. National Training Programs of Innovation and Entrepreneurship for Undergraduates [201510058005, 201510058051]

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Electrospinning provides a facile and versatile method for generating nanofibers from a large variety of starting materials, including polymers, ceramic, composites, and micro-/nanocolloids. In particular, incorporating functional nanoparticles (NPs) with polymeric materials endows the electrospun fibers/sheets with novel or better performance. This work evaluates the spinnability of polyacrylamide (PAAm) solution containing thermoresponsive poly(N-iso-propylacrylamide-co-tert-butyl acrylate) microgel nanospheres (PNTs) prepared by colloid electrospinning. In the presence of a suitable weight ratio (1:4) of PAAm and PNTs, the in fiber arrangements of PNTs-electrospun fibers will evolve into chain-like arrays and beads-on-string structures by confining of PAAm nanofibers, and then the free amide groups of PAAm can bind amide moieties on the surfaces of PNTs, resulting in the assembling of PNTs in the cores of PAAm fibers. The present work serves as a reference in the fabrication of novel thermoresponsive hybrid fibers involving functional nanospheres via electrospun packing. The prepared nanofibers with chain like and thermoresponsive colloid arrays in the cores are expected to have potential application in various fields.

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