Kumari Neeraj, Mohan Chandra, Negi Arvind
Department of Chemistry, SBAS, K. R. Mangalam University, Gurugram 122103, India.
Faculty of Pharmacy, DIT University, Dehradun 248009, India.
Polymers (Basel). 2023 Apr 18;15(8):1922. doi: 10.3390/polym15081922.
The present study aims to explore the impact of pristine and surfactant-modified clays (montmorillonite, bentonite and vermiculite) on the thermomechanical properties of a poly (vinyl chloride) (PVC) polymer film. Initially, clay was modified by employing the ion exchange method. The modification of clay minerals was confirmed by the XRD pattern and thermogravimetric analysis. Pristine PVC polymer film and clay (montmorillonite, bentonite and vermiculite)-based PVC polymer composite films were fabricated using solution casting. The ideal dispersion of surfactant-modified organo-clays was observed in the PVC polymer matrix due to the hydrophobic nature of modified clays. The resultant pure polymer film and clay polymer composite film were characterized using XRD and TGA, and their mechanical properties were determined using a tensile strength tester and Durometer. From the XRD pattern, the intercalation of the PVC polymer film was found in the interlayer of organo-clay while exfoliation or partial intercalation and exfoliation were observed for pristine clay mineral-based PVC polymer composite films. Thermal analysis indicated a lowering of the decomposition temperature of the composite film as clay promotes the thermal degradation temperature of PVC. Improvement in the tensile strength and hardness was found to be more frequent in the case of organo-clay-based PVC polymer films, which is only due to the hydrophobic nature of organ clays, resulting in greater compatibility with the polymer matrix.
本研究旨在探讨原始粘土和表面活性剂改性粘土(蒙脱石、膨润土和蛭石)对聚氯乙烯(PVC)聚合物薄膜热机械性能的影响。首先,采用离子交换法对粘土进行改性。通过X射线衍射图谱和热重分析确认了粘土矿物的改性。采用溶液浇铸法制备了原始PVC聚合物薄膜以及基于粘土(蒙脱石、膨润土和蛭石)的PVC聚合物复合薄膜。由于改性粘土的疏水性,在PVC聚合物基体中观察到了表面活性剂改性有机粘土的理想分散状态。使用X射线衍射仪和热重分析仪对所得的纯聚合物薄膜和粘土聚合物复合薄膜进行了表征,并使用拉伸强度测试仪和硬度计测定了它们的机械性能。从X射线衍射图谱中发现,PVC聚合物薄膜插层进入有机粘土的层间,而对于基于原始粘土矿物的PVC聚合物复合薄膜,则观察到了剥离或部分插层与剥离现象。热分析表明,由于粘土促进了PVC的热降解温度,复合薄膜的分解温度降低。在基于有机粘土的PVC聚合物薄膜中,拉伸强度和硬度的提高更为常见,这仅仅是由于有机粘土的疏水性,使其与聚合物基体具有更高的相容性。