Zhu Dongzhi, Kurahashi Eiji, You Hui, Wada Toru, Chammingkwan Patchanee, Taniike Toshiaki
Graduate School of Advanced Science and Technology, Japan Advanced Institute of Science and Technology, 1-1 Asahidai, Nomi 923-1292, Ishikawa, Japan.
Kojima Industries Corporation, 3-30 Shimoichiba-cho, Toyota 471-8588, Aichi, Japan.
Polymers (Basel). 2022 Jan 30;14(3):563. doi: 10.3390/polym14030563.
In situ grafting of a reactive matrix and nanofillers is a promising strategy to fabricate graft-type polypropylene (PP)-based nanocomposites, where the grafting efficiency is affected by the initial dispersion of nanofillers in the matrix. In this work, influences of surface organic modification of nanofillers were investigated on properties of PP/SiO nanocomposites using poly(propylene-co-octenyltrimethoxysilane) as a reactive matrix. The surface modification of SiO, especially with longer alkyl chains, led to improved dispersion of nanoparticles, thus promoting the grafting reaction and mechanical properties. The combination of in situ grafting and surface modification of nanofillers provided several benefits, most notably in balancing the strength and the toughness, which could not be achieved by the grafting alone.
原位接枝反应性基体和纳米填料是制备接枝型聚丙烯(PP)基纳米复合材料的一种很有前景的策略,其中接枝效率受纳米填料在基体中的初始分散情况影响。在这项工作中,以聚(丙烯 - 共 - 辛烯基三甲氧基硅烷)作为反应性基体,研究了纳米填料的表面有机改性对PP/SiO纳米复合材料性能的影响。SiO的表面改性,特别是具有较长烷基链的改性,导致纳米颗粒的分散性得到改善,从而促进了接枝反应和机械性能。纳米填料的原位接枝和表面改性相结合带来了诸多益处,最显著的是在平衡强度和韧性方面,这是仅通过接枝无法实现的。