Atta Ayman M, El-Saeed Ashraf M, Al-Lohedan Hamad A, Wahby Mohamed
Chemistry Department, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.
Petroleum Application Department, Egyptian Petroleum Research Institute, Nasr City, Cairo 11727, Egypt.
Molecules. 2017 Jun 2;22(6):905. doi: 10.3390/molecules22060905.
Montmorillonite (MMT) clay mineral is widely used as filler for several organic coatings. Its activity is increased by exfoliation via chemical modification to produce nanomaterials. In the present work, the modification of MMT to form nanogel composites is proposed to increase the dispersion of MMT into epoxy matrices used to fill cracks and holes produced by the curing exotherms of epoxy resins. The dispersion of MMT in epoxy improved both the mechanical and anti-corrosion performance of epoxy coatings in aggressive marine environments. In this respect, the MMT surfaces were chemically modified with different types of 2-acrylamido-2-methyl propane sulfonic acid (AMPS) nanogels using a surfactant-free dispersion polymerization technique. The effect of the chemical structure, nanogel content and the interaction with MMT surfaces on the surface morphology, surface charges and dispersion in the epoxy matrix were investigated for use as nano-filler for epoxy coatings. The modified MMT nanogel epoxy composites showed excellent resistance to mechanical damage and salt spray resistance up to 1000 h. The interaction of MMT nanogel composites with the epoxy matrix and good response of AMPS nanogel to sea water improve their ability to act as self-healing materials for epoxy coatings for steel.
蒙脱石(MMT)粘土矿物被广泛用作多种有机涂料的填料。通过化学改性使其剥离以制备纳米材料,可提高其活性。在本工作中,提出对MMT进行改性以形成纳米凝胶复合材料,以增加MMT在环氧树脂基体中的分散性,该环氧树脂基体用于填充环氧树脂固化放热产生的裂缝和孔洞。在侵蚀性海洋环境中,MMT在环氧树脂中的分散改善了环氧涂层的机械性能和防腐性能。在这方面,使用无表面活性剂分散聚合技术,用不同类型的2-丙烯酰胺基-2-甲基丙烷磺酸(AMPS)纳米凝胶对MMT表面进行化学改性。研究了化学结构、纳米凝胶含量以及与MMT表面的相互作用对表面形态、表面电荷和在环氧基体中分散性的影响,以用作环氧涂层的纳米填料。改性后的MMT纳米凝胶环氧复合材料表现出优异的抗机械损伤性能和长达1000小时的耐盐雾性能。MMT纳米凝胶复合材料与环氧基体的相互作用以及AMPS纳米凝胶对海水的良好响应提高了它们作为钢铁环氧涂层自修复材料的能力。