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Polypropylene-Based Nanocomposite with Enhanced Aging Stability by Surface Grafting of Silica Nanofillers with a Silane Coupling Agent Containing an Antioxidant

机译:基于聚丙烯的纳米复合材料,通过含有抗氧化剂的硅烷偶联剂的硅纳米氧化铝表面接枝增强老化稳定性

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Simultaneous improvement in the mechanical properties and lifetime of polymer nanocomposites is crucially significant to further extend the versatility of polymer materials and reduce environmental impact. In this study, we fabricated reinforced polypropylene (PP)-based nanocomposites with improved aging stability by the addition of surface-modified well-ordered silica nanospheres with a silane coupling agent (SCA) containing hindered phenol antioxidant as a filler. Uniform grafting of the SCA on the filler surface contributed to homogeneous dispersion of the filler into the matrix, leading to improved properties (e.g., stiffness and ductility) and uniform distribution of the antioxidant component into the entire nanocomposite by filler dispersion. The grafting of SCA also likely provides an inhibitory effect on antioxidant migration, which leads to loss of polymer stability during the aging process. This novel idea for the material design of PP-based nanocomposites, which simultaneously enhances their mechanical properties and lifetime, is promising for application in the fabrication of various types of polymer nanocomposites.
机译:聚合物纳米复合材料的机械性能和寿命的同时改善是至关重要的,以进一步延长聚合物材料的多功能性并降低环境影响。在该研究中,我们通过加入具有含有含有阻碍的酚抗氧化剂作为填料的硅烷偶联剂(SCA)的表面改性的良好有序的二氧化硅纳米体制造了增强聚丙烯(PP)的纳米复合材料,其具有改善的老化稳定性。填充表面上的SCA的均匀接枝有助于填料将填料的均匀分散在基质中,从而通过填充分散体均匀地分散到抗氧化剂组分到整个纳米复合材料中的均匀分布。 SCA的接枝也可能对抗氧化剂迁移提供抑制作用,这导致老化过程中的聚合物稳定性损失。这种基于PP的纳米复合材料的材料设计的新颖思想,其同时增强其机械性能和寿命,是在制造各种聚合物纳米复合材料的制造中的应用。

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