Role of cross-linking process on the performance of PMMA

Hasinah K. Albeladi, Abeer N. Al-Romaizan, M. Hussein
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引用次数: 23

Abstract

There is no doubt that, poly (methyl-methacrylate) (PMMA) is commercially used synthetic resin that produced via polymerization of its starting methyl-methacrylate monomer. It is a multipurpose amorphous thermoplastic polymer that is widely used in opticelectronic instruments like: surface boosted Raman scattering substrates,1 lightweight window,2 solar cells,3 light-emitting diode4 and battery5 because of its significant characteristics such as: its exceptional optical transparency, low-priced, mechanical properties, chemical resistance, and tremendous electrical.6 Also, PMMA is used commonly in electronic, surgical and dental supplies, as it is characterized by its resistance to several inorganic reagents, acidic and alkaline solutions, non-polar solvents, and aliphatic hydrocarbons.7,8 Unfortunately, the hydrophobic nature and lack of triggered organic groups on PMMA, its low mechanical dynamical properties under high temperature circumstances and thermal steadiness considered as drawbacks of PMMA that restricted its applications. There is an important well known method used to improve the properties of PMMA radically such as: its influence in the chemical, thermal, physical, morphological, and mechanical behavior of a polymer, which made it used potentially in different fields such as electronic applications,9 humidity sensors10 batteries.11 This method is called Cross-linking in which it tends to polymer modification by the process of interlinking the polymer chains through ionic or covalent bonds, in which it confines the polymer chains to slide past each other by impeding their free movement and produces elasticity in amorphous polymers at the same time, and this process can be carried out by using (i) chemical cross-linking or (ii) physical procedures.
交联工艺对PMMA性能的影响
毫无疑问,聚甲基丙烯酸甲酯(PMMA)是由其起始甲基丙烯酸甲酯单体聚合而成的商用合成树脂。它是一种多用途的无定形热塑性聚合物,由于其优异的光学透明度、低廉的价格、机械性能、耐化学性和巨大的电性能等显著特性,广泛应用于表面增强拉曼散射基板、轻质窗口、太阳能电池、发光二极管和电池等光学电子仪器中此外,PMMA通常用于电子,外科和牙科用品,因为它的特点是耐几种无机试剂,酸性和碱性溶液,非极性溶剂和脂肪族碳氢化合物。7,8不幸的是,PMMA的疏水性和缺乏触发有机基团,其在高温环境下的低机械动力学性能和热稳定性被认为是PMMA的缺点,限制了它的应用。有一种重要的众所周知的方法可以从根本上改善PMMA的性能,例如:它对聚合物的化学、热、物理、形态和机械行为的影响,这使得它在电子应用、湿度传感器、电池等不同领域有潜在的应用这种方法被称为交联,它倾向于通过离子或共价键将聚合物链相互连接的过程来修饰聚合物,在这种过程中,它通过阻碍聚合物链的自由运动来限制聚合物链相互滑动,同时在非晶聚合物中产生弹性,这个过程可以通过使用(i)化学交联或(ii)物理程序来实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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