4.6 Article

Functional Nanocomposite Films of Poly(Lactic Acid) with Well-Dispersed Chitin Nanocrystals Achieved Using a Dispersing Agent and Liquid-Assisted Extrusion Process

期刊

MOLECULES
卷 26, 期 15, 页码 -

出版社

MDPI
DOI: 10.3390/molecules26154557

关键词

chitin nanocrystals; nanocomposites; liquid-assisted extrusion; dispersion; melt strength; mechanical properties; antibacterial property; migration

资金

  1. Horizon 2020 BBI project NewPack [792261]
  2. B4E
  3. Swedish strategic program
  4. Wallenberg Wood Science Center (WWSC)

向作者/读者索取更多资源

The use of biobased dispersant TEC improved the dispersion of ChNCs in the PLA matrix, with the best dispersion observed in the nanocomposite prepared with 15 wt% TEC. This resulted in mechanical properties similar to commonly used polymers, demonstrating enhanced melt viscosity, melt strength, and antibacterial activity in the nanocomposite with the highest TEC content (15 wt%).
The development of bio-based nanocomposites is of high scientific and industrial interest, since they offer excellent advantages in creating functional materials. However, dispersion and distribution of the nanomaterials inside the polymer matrix is a key challenge to achieve high-performance functional nanocomposites. In this context, for better dispersion, biobased triethyl citrate (TEC) as a dispersing agent in a liquid-assisted extrusion process was used to prepare the nanocomposites of poly (lactic acid) (PLA) and chitin nanocrystals (ChNCs). The aim was to identify the effect of the TEC content on the dispersion of ChNCs in the PLA matrix and the manufacturing of a functional nanocomposite. The nanocomposite film's optical properties; microstructure; migration of the additive and nanocomposites' thermal, mechanical and rheological properties, all influenced by the ChNC dispersion, were studied. The microscopy study confirmed that the dispersion of the ChNCs was improved with the increasing TEC content, and the best dispersion was found in the nanocomposite prepared with 15 wt% TEC. Additionally, the nanocomposite with the highest TEC content (15 wt%) resembled the mechanical properties of commonly used polymers like polyethylene and polypropylene. The addition of ChNCs in PLA-TEC15 enhanced the melt viscosity, as well as melt strength, of the polymer and demonstrated antibacterial activity.

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