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2000
Volume 13, Issue 1
  • ISSN: 1876-4029
  • E-ISSN: 1876-4037

Abstract

Background: Electrospun Cellulose Acetate (CA) nanofibrous membrane can be used in many areas such as biomedicine, water treatment. However, due to the strong hydrogen-bond interaction, the rare solvent can dissolve the CA and the resulting CA nanofibrous membranes always show bad morphology and poor performance. Aims: To research the effect of CaCl-Formic acid (CaCl-FA) solvent system on the morphology and structure of CA nanofibrous membrane. Methods: CA nanofibrous membrane was fabricated with a two-step dissolution method using the first step of CaCl-FA solvent system followed by the second step of FA solvent solely. Subsequently, the CA nanofibrous membrane morphology and structure property were systematically investigated. Results and Conclusion: The results show that the CaCl-FA can dissolve the CA efficiently. Additionally, the regenerated CA nanofibers are well-formed under all the CA concentrations with controlling fiber diameter ranging from 224.9 ± 38.6 nm to 367.8 ± 80.4 nm. The results suggest that this two-step dissolution method can be an effective and alternative approach to dissolve CA and regenerate CA nanofibrous membrane.

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/content/journals/mns/10.2174/1876402912666200130103228
2021-03-01
2025-09-04
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  • Article Type:
    Research Article
Keyword(s): CA; CaCl2-formic acid; Cellulose acetate; nanofiber; regenerate; water treatment
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