4.7 Article

Interpenetrated polymer networks in composites with poly(vinyl alcohol), micro- and nano-fibrillated cellulose (M/NFC) and polyHEMA to develop packaging materials

期刊

CELLULOSE
卷 22, 期 6, 页码 3877-3894

出版社

SPRINGER
DOI: 10.1007/s10570-015-0748-2

关键词

Poly(vinyl alcohol); Micro- and nanofibrillated cellulose; Photo-crosslinking; Composite films; Packaging

资金

  1. National Science Foundation of China [51373070]
  2. State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Donghua University [LK 1426]
  3. Key Laboratory of Advanced Textile Materials and Manufacturing Technology (Zhejiang Sci-Tech University), Ministry of Education [2014003]
  4. Cooperative Innovation Fund [BY2014023-07]
  5. Fundamental Research Funds for the Central Universities [JUSRP 51305A]
  6. MOE [B13025]
  7. SAFEA [B13025]

向作者/读者索取更多资源

A novel method for the preparation of composites based on poly(vinyl alcohol) (PVA) and micro- and nano-fibrillated cellulose (M/NFC) is reported. The addition of crosslinking HEMA monomers and a photo-initiator enabled the formation of an interpenetrated polymer network that displayed enhanced interfacial adhesion and dispersion of (M/NFC) in the matrix. Photo-crosslinked PVA/(M/NFC)/polyHEMA composite films produced by casting followed by UV polymerization of HEMA were characterized by using several approaches. These included Fourier transform infrared and UV-Vis spectroscopies, differential scanning calorimetry, X-ray diffractometry, thermogravimetric analysis and dynamic mechanical analysis. The thermo-mechanical and optical properties as well as water absorption and vapor barrier abilities of the developed photo-crosslinked PVA/(M/NFC)/polyHEMA films were measured and the benefit of photo-crosslinking determined. The major degradation peak of photo-crosslinked PVA/(M/NFC)/polyHEMA composites increased substantially compared to that of the PVA/(M/NFC) system (from similar to 300 to similar to 350 A degrees C). The water vapor permeability of PVA/(M/NFC)/polyHEMA composite films was reduced with HEMA loading (5.44 x 10(-11), 5.10 x 10(-11), 4.12 x 10(-11), 4.31 x 10(-11) g/m h Pa for 0, 5, 10 and 15 % HEMA, respectively). Overall, a new and facile method for the synthesis of PVA/(M/NFC)-based composite networks interpenetrated with cross-linked poly(HEMA) is demonstrated, offering excellent prospects for packaging applications.

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