Su Linna, Fang Changfa, Luo Huanzhong
Shenzhen Polytechnic University Shenzhen 518055 China.
RSC Adv. 2024 Oct 1;14(42):31251-31258. doi: 10.1039/d4ra03125c. eCollection 2024 Sep 24.
The poor interaction between the hydrophilic montmorillonite and hydrophobic epoxy resins leads to agglomeration of montmorillonite within epoxy resins, which finally results in poor macro properties of the epoxy resin nanocomposites. Although silane modification can improve the hydrophobicity of montmorillonite surface, the hydrolysis and condensation of silane lead to locking effect in the interlayer structure of functionalized montmorillonite. The effect of the functionalized montmorillonite on the properties of the epoxy resin remains unclear. Herein, we present multi technique approach to thoroughly evaluate the macro properties of the montmorillonite/epoxy resin nanocomposites, including dynamic mechanical thermal, thermo-mechanical, dielectric, water absorption and subsequently evaluate the molecular factors governing these characteristics. Importantly, the storage modulus has been enhanced by 44%, from 2416 MPa for pure epoxy resin to 2416 MPa for nanocomposites with 5.0 wt% functionalized montmorillonite. Our analysis reveals the increase of thermal stability and glass-transition temperature, as well as a reduction of the coefficient of thermal expansion with the addition of functionalized montmorillonite. Additionally, functionalized montmorillonite leads to decreased water absorption. This research aims to offer guidance for the development of high-performance montmorillonite/polymer nanocomposites, potentially opening up new applications for montmorillonite in polymer nanocomposites.
亲水性蒙脱石与疏水性环氧树脂之间的不良相互作用导致蒙脱石在环氧树脂中团聚,最终导致环氧树脂纳米复合材料的宏观性能不佳。尽管硅烷改性可以提高蒙脱石表面的疏水性,但硅烷的水解和缩合会导致功能化蒙脱石的层间结构产生锁定效应。功能化蒙脱石对环氧树脂性能的影响仍不明确。在此,我们提出了一种多技术方法,以全面评估蒙脱石/环氧树脂纳米复合材料的宏观性能,包括动态力学热性能、热机械性能、介电性能、吸水性,随后评估控制这些特性的分子因素。重要的是,储能模量提高了44%,从纯环氧树脂的2416 MPa提高到含有5.0 wt%功能化蒙脱石的纳米复合材料的3470 MPa。我们的分析表明,随着功能化蒙脱石的加入,热稳定性和玻璃化转变温度提高,热膨胀系数降低。此外,功能化蒙脱石导致吸水率降低。本研究旨在为高性能蒙脱石/聚合物纳米复合材料的开发提供指导,可能为蒙脱石在聚合物纳米复合材料中的新应用开辟道路。