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首页> 外文期刊>Journal of Applied Polymer Science >Synergistic effects of modified TiO2/multifunctionalized graphene oxide nanosheets as functional hybrid nanofiller in enhancing the interface compatibility of PLA/starch nanocomposites
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Synergistic effects of modified TiO2/multifunctionalized graphene oxide nanosheets as functional hybrid nanofiller in enhancing the interface compatibility of PLA/starch nanocomposites

机译:改性TiO2 /多官能化石墨烯氧化物纳米片作为功能性杂交纳米氧化物在提高PLA /淀粉纳米复合材料的界面相容性中的协同作用

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The aim of this study is to investigate the synergistic effects of modified TiO2/multifunctionalized graphene oxide nanosheets at different ratios on the interface compatibility between starch and poly(lactic acid) (PLA). To this end, silanylated nano-TiO2 (MTiO2, 1 and 2%) and alkylated maleic anhydride grafted graphene oxide (f-GO, 0.1, 0.2, and 0.4%) at different combinations are blended with the PLA-starch composites using solution blending technique. Then, the synergistic effects of MTiO2 and f-GO on PLA/starch matrix are investigated in terms of the morphology, crystallinity, structural characterization, thermal stability, dynamic mechanical, and antiaging properties, and the related mechanisms. The Raman and Fourier transform infrared spectroscopy spectra verify the successful synthesis of the two modified nanofillers (f-GO and MTiO2) and the formation of strong hydrogen bond within the PLA-starch nanocomposites. Due to the strong interfacial interaction and the synergistic effect from the combination of 1% MTiO2 and 0.2% f-GO, obvious improvement was observed in PLA-starch versus other nanocomposites in terms of morphology, thermal stability, surface hydrophobicity, storage modulus, ultraviolet-shielding capacity, and aging-resistance. Furthermore, differential scanning calorimeter (DSC), isothermal crystallization kinetic, and X-ray diffraction analysis demonstrate that f-GO and the M-TiO2 significantly synergize in enhancing the crystallization rate and crystallinity of PLA/starch matrix. These results provide novel insights for constructing high-performance nanocomposites and facilitate their applications in food packaging.
机译:本研究的目的是研究改性TiO2 /多官能石墨烯氧化物纳米烯片在不同比例上的协同作用对淀粉和聚(乳酸)(PLA)之间的界面相容性。在该端,在不同组合的硅烷基化的纳米TiO 2(MTIO 2,1和2%)和烷基化的马来酸酐接枝的石墨烯(F-GO,0.1,0.2和0.4%)与PLA-淀粉复合材料混合混合技术。然后,根据形态,结晶度,结构表征,热稳定性,动态机械和抗衰老特性以及相关机制,研究了MTIO2和F-GE on PLA /淀粉基质的协同作用。拉曼和傅里叶变换红外光谱光谱验证了两种改性纳米填料(F-Go和MtiO 2)的成功合成,并在PLA-淀粉纳米复合材料中形成了强氢键。由于强烈的界面相互作用和来自1%MTIO2和0.2%F-Ga的组合的协同效应,在PLA-淀粉与其他纳米复合材料方面观察到明显改善,在形态,热稳定性,表面疏水性,储存量模,紫外线方面 - 骨骼容量和耐磨性。此外,差分扫描量热计(DSC),等温结晶动力学和X射线衍射分析表明F-GO和M-TiO2在提高PLA /淀粉基质的结晶度和结晶度方面显着促进。这些结果提供了用于构建高性能纳米复合材料的新颖见解,并促进其在食品包装中的应用。

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