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Modification and characterization of biodegradable methylcellulose films with trimethylolpropane trimethacrylate (TMPTMA) by γ radiation: effect of nanocrystalline cellulose. | LitMetric

Modification and characterization of biodegradable methylcellulose films with trimethylolpropane trimethacrylate (TMPTMA) by γ radiation: effect of nanocrystalline cellulose.

J Agric Food Chem

Research Laboratories in Sciences Applied to Food, Canadian Irradiation Center (CIC), INRS-Institute Armand-Frappier, University of Quebec, Laval, Quebec, Canada.

Published: January 2012

AI Article Synopsis

  • Methylcellulose (MC) films were created by dissolving 1% MC with 0.25% glycerol and adding varying amounts of Trimethylolpropane trimethacrylate (TMPTMA) monomer before irradiating the films at doses between 0.1 to 10 kGy.
  • The optimal mechanical properties, including the highest tensile strength and modulus, were achieved using 0.1% TMPTMA at a radiation dose of 5 kGy, resulting in films with significantly lower water vapor permeability compared to standard MC films.
  • Incorporating nanocrystalline cellulose (NCC) further enhanced the films' mechanical and barrier properties, highlighting the effectiveness of combining TMPTMA and NCC in developing

Article Abstract

Methylcellulose (MC)-based films were prepared by solution casting from its 1% aqueous suspension containing 0.25% glycerol. Trimethylolpropane trimethacrylate (TMPTMA) monomer (0.1-2% by wt) along with the glycerol was added to the MC suspension. The films were cast and irradiated from a radiation dose varied from 0.1 to 10 kGy. Then the mechanical properties such as tensile strength (TS), tensile modulus (TM), and elongation at break (Eb) and barrier properties of the films were evaluated. The highest TS (47.88 PMa) and TM (1791.50 MPa) of the films were found by using 0.1% monomer at 5 kGy dose. The lowest water vapor permeability (WVP) of the films was found to be 5.57 g·mm/m(2)·day·kPa (at 0.1% monomer and 5 kGy dose), which is 12.14% lower than control MC-based films. Molecular interactions due to incorporation of TMPTMA were supported by FTIR spectroscopy. A band at 1720 cm(-1) was observed due to the addition of TMPTMA in MC-based films, which indicated the typical (C═O) carbonyl stretching. For the further improvement of the mechanical and barrier properties of the film, 0.025-1% nanocrystalline cellulose (NCC) was added to the MC-based suspension containing 1% TMPTMA. Addition of NCC led to a significant improvement in the mechanical and barrier properties. The novelty of this investigation was to graft insoluble monomer using γ radiation with MC-based films and use of biodegradable NCC as the reinforcing agent.

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Source
http://dx.doi.org/10.1021/jf203500sDOI Listing

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