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Evaluation of dimethyl meta-isopropenyl benzyl isocyanate (TMI(RTM)) in emulsion polymerization.

机译:在乳液聚合中评估二甲基间异丙烯基苄基异氰酸酯(TMI(RTM))。

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TMI{dollar}spcircler{dollar} is a novel bifunctional monomer possessing an unsaturation and an isocyanate group. It can be incorporated into a polymer chain via copolymerization with conventional unsaturated monomers such as styrene, methyl methacrylate (MMA), and n-butyl acrylate (BA), in order to obtain polymers with pendant isocyanate groups. Crosslinking of these polymers can then be carried out through the isocyanate groups.; The performance of TMI as a comonomer in the emulsion terpolymerization with MMA and BA was studied. The isocyanate group of TMI was quite stable towards hydrolysis when the polymerization was carried out at 40{dollar}spcirc{dollar}C using redox initiators. High concentrations of TMI were found to retard the polymerization kinetics, and lower the particle size. Several polymerization processes were developed to obtain high conversions at appreciable rates. The locus of the NCO groups in the latex particles could be controlled via seeded polymerization. NCO groups were concentrated at the particle surface by adding all the TMI during the second stage.; The mechanical properties of the TMI latex polymer films were investigated. External catalysts such as triethyl amine, when added prior to film formation, resulted in poor tensile properties as a result of premature crosslinking. When the films were cured after the completion of the film formation process, a significant improvement in the mechanical properties was observed. Tensile strength and modulus of the cured latex films were found to increase with TMI concentration. Latexes with NCO groups at the surface of the polymer particles exhibited the highest tensile strength and modulus. This was attributed to the development of a crosslinked network at the inter-particle boundaries as a result of interfacial crosslinking.; Single-pack latex systems which could be cured at room temperature were obtained by incorporating small amounts of methacrylic acid (MAA) in the TMI latex polymer. MAA acted as a catalyst to accelerate the moisture-curing reaction of the NCO groups at room temperature. These latexes exhibited excellent shelf-stability of more than one year at room temperature.
机译:TMI {dollar} spcircler {dollar}是一种具有不饱和基团和异氰酸酯基的新型双官能单体。可以通过与常规不饱和单体(例如苯乙烯,甲基丙烯酸甲酯(MMA)和丙烯酸正丁酯(BA))共聚,将其掺入聚合物链中,从而获得具有异氰酸酯侧基的聚合物。然后可以通过异氰酸酯基团进行这些聚合物的交联。研究了TMI作为共聚单体与MMA和BA进行乳液三元聚合的性能。当使用氧化还原引发剂在40℃时,TMI的异氰酸酯基对水解非常稳定。发现高浓度的TMI会阻碍聚合动力学,并降低粒径。开发了几种聚合方法以可观的速率获得高转化率。乳胶颗粒中的NCO基团的位置可以通过种子聚合来控制。在第二阶段,通过添加所有TMI,将NCO基团集中在颗粒表面。研究了TMI乳胶聚合物薄膜的机械性能。在成膜之前添加外部催化剂,例如三乙胺,由于过早交联,导致拉伸性能差。当成膜过程完成后固化膜时,观察到机械性能的显着改善。发现固化的胶乳膜的拉伸强度和模量随TMI浓度而增加。在聚合物颗粒表面具有NCO基团的胶乳表现出最高的拉伸强度和模量。这归因于由于界面交联而在颗粒间边界处形成了交联网络。通过在TMI胶乳聚合物中掺入少量甲基丙烯酸(MAA),可以获得可以在室温下固化的单包装胶乳体系。在室温下,MAA充当催化剂以加速NCO基团的湿气固化反应。这些胶乳在室温下具有超过一年的优异保存稳定性。

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