Spectroscopic and thermogravimetric studies of homogeneous materials from PU/PMMA/SiO2

Virginia Ramírez-Salas, Luis Daniel Ordoñez-Pacheco, Erika Alarcón-Ruiz, Beatríz Eugenia Moreno-Martínez
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Abstract

Polymers of organic-inorganic origin are incompatible by nature and a proposal to solve this behavior is the formation of Interpenetrated Polymeric Networks (IPN) using coupling agents. Coupling agents make it possible to create a crosslinking between the phases present that provides better mechanical, optical and thermal properties. These materials are known as Hybrid Networks. To obtain optically transparent materials, individual networks of Polyurethane (PU), Methyl Polyacrylate (PMMA) and Silica (SiO2) were used. Binary and ternary networks were synthesized using bulk polymerization incorporating SiO2 up to 10% by weight. In this research, coupling agents such as Trimethoxysilyl Propyl Methacrylate (MSMA) and Isocyanotopropyl Triethoxy Silane (IPTS) were introduced to the ternary networks in order to reduce the phase separation that occurs in these systems. Fourier Transform Infrared Spectroscopy (FTIR) studies demonstrated the presence of functional groups of binary and ternary networks. On the other hand, the thermogravimetric tests (TGA) carried out on hybrid IPN´s with coupling agents, presented greater thermal stability and better optical properties, providing the new IPN´s with the opportunity to have promising applications.
PU/PMMA/SiO2均质材料的光谱和热重研究
有机-无机来源的聚合物本质上是不相容的,解决这一行为的建议是使用偶联剂形成互穿聚合物网络(IPN)。偶联剂可以在现有的相之间建立交联,从而提供更好的机械、光学和热性能。这些材料被称为混合网络。为了获得光学透明材料,使用了聚氨酯(PU)、聚丙烯酸甲酯(PMMA)和二氧化硅(SiO2)的单独网络。采用体积聚合法合成了二元和三元网络,其中SiO2含量为10%。在本研究中,偶联剂如三甲氧基硅丙基甲基丙烯酸酯(MSMA)和异氰基丙基三乙氧基硅烷(IPTS)被引入到三元网络中,以减少这些系统中发生的相分离。傅里叶变换红外光谱(FTIR)研究证实了二元和三元网络的官能团的存在。另一方面,对偶联剂混合IPN进行的热重测试(TGA)显示出更高的热稳定性和更好的光学性能,为新型IPN具有广阔的应用前景提供了机会。
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