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通过替代制造方法在多功能聚乳酸(PLA)-氧化锌纳米复合材料薄膜的生产中增值。

Adding Value in Production of Multifunctional Polylactide (PLA)-ZnO Nanocomposite Films through Alternative Manufacturing Methods.

机构信息

Laboratory of Polymeric and Composite Materials, Materia Nova Materials R&D Center & UMons Innovation Center, Avenue Copernic 3, 7000 Mons, Belgium.

Center of Innovation and Research in Materials and Polymers (CIRMAP), Laboratory of Polymeric and Composite Materials, University of Mons (UMons), Place du Parc 20, 7000 Mons, Belgium.

出版信息

Molecules. 2021 Apr 2;26(7):2043. doi: 10.3390/molecules26072043.

Abstract

Due to the added value conferred by zinc oxide (ZnO) nanofiller, e.g., UV protection, antibacterial action, gas-barrier properties, poly(lactic acid) (PLA)-ZnO nanocomposites show increased interest for utilization as films, textile fibers, and injection molding items. The study highlights the beneficial effects of premixing ZnO in PLA under given conditions and its use as masterbatch (MB), a very promising alternative manufacturing technique. This approach allows reducing the residence time at high processing temperature of the thermo-sensitive PLA matrix in contact of ZnO nanoparticles known for their aptitude to promote degradation effects onto the polyester chains. Various PLA-ZnO MBs containing high contents of silane-treated ZnO nanoparticles (up to 40 wt.% nanofiller specifically treated with triethoxycaprylylsilane) were produced by melt-compounding using twin-screw extruders. Subsequently, the selected MBs were melt blended with pristine PLA to produce nanocomposite films containing 1-3 wt.% ZnO. By comparison to the more traditional multi-step process, the MB approach allowed the production of nanocomposites (films) having improved processing and enhanced properties: PLA chains displaying higher molecular weights, improved thermal stability, fine nanofiller distribution, and thermo-mechanical characteristic features, while the UV protection was confirmed by UV-vis spectroscopy measurements. The MB alternative is viewed as a promising flexible technique able to open new perspectives to produce more competitive multifunctional PLA-ZnO nanocomposites.

摘要

由于氧化锌 (ZnO) 纳米填料赋予的附加值,例如 UV 保护、抗菌作用、气体阻隔性能,聚乳酸 (PLA)-ZnO 纳米复合材料作为薄膜、纺织纤维和注塑制品的应用引起了更多关注。该研究强调了在给定条件下将 ZnO 预混合到 PLA 中的有益效果,以及将其用作母料 (MB) 的用途,这是一种很有前途的替代制造技术。这种方法可以减少热敏 PLA 基质在与 ZnO 纳米粒子接触时的高温处理时间,众所周知,这些纳米粒子有促进聚酯链降解的倾向。通过双螺杆挤出机熔融共混,制备了各种含有高含量硅烷处理 ZnO 纳米粒子(高达 40wt.%经三乙氧基辛基硅烷特别处理的纳米填料)的 PLA-ZnO MB。随后,将选定的 MB 与原始 PLA 熔融共混,以制备含有 1-3wt.% ZnO 的纳米复合材料薄膜。与更传统的多步工艺相比,MB 方法允许生产具有改善加工性能和增强性能的纳米复合材料(薄膜):PLA 链显示出更高的分子量、改善的热稳定性、更细的纳米填料分布和热机械特性,而紫外线保护通过 UV-vis 光谱测量得到证实。MB 替代方法被视为一种很有前途的灵活技术,能够为生产更具竞争力的多功能 PLA-ZnO 纳米复合材料开辟新的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01a9/8038199/7a04507f087f/molecules-26-02043-g001.jpg

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