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Polymer Interdiffusion vs Cross-Linking in Carboxylic Acid-Carbodiimide Latex Films.Effect of Annealing Temperature,Reactive Group Concentration,and Carbodiimide Substituent

机译:羧酸-碳二亚胺乳胶膜中的聚合物互扩散与交联。退火温度,反应基团浓度和碳二亚胺取代基的影响

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This article describes the results of experiments examining the competition between the polymer interdiffusion and a cross-linking reaction in poly(2-ethylhexyl methacrylate) latex blend films in which the reactive groups (carboxylic acid and carbodiimide groups) are present in separate latex particles.In this system,polymer diffusion is necessary to bring the reactive groups into proximity,but the reaction creates long chain branches and gel that retard or inhibit further polymer diffusion.To enable measuring polymer diffusion rates by the energy transfer method,the methacrylic acid-containing particles were also labeled with a donor dye,and the -NCN-containing particles were labeled with an acceptor dye.Along with the extent of polymer diffusion,we monitored the growth in gel content as well as the consumption of carbodiimide groups.High gel content in the final film was promoted by factors that maximize the rate of polymer diffusion relative to the rate of the cross-linking reaction:high annealing temperature,low functional group content,and less reactive carbodiimide groups.
机译:本文介绍了实验结果,这些实验研究了聚合物互扩散与聚(甲基丙烯酸2-乙基己酯)乳胶共混膜中的交联反应之间的竞争,其中反应性基团(羧酸和碳二亚胺基)存在于单独的乳胶颗粒中。在该系统中,聚合物扩散是使反应性基团接近所必需的,但反应会形成长链支链和凝胶,从而阻碍或抑制聚合物的进一步扩散。为了通过能量转移方法测量聚合物的扩散速率,含甲基丙烯酸颗粒还用供体染料标记,含-NCN的颗粒也用受体染料标记。随着聚合物扩散的程度,我们监测了凝胶含量的增长以及碳二亚胺基的消耗。相对于交联反应的速率,最大程度地提高聚合物扩散速率的因素促进了最终膜中的“不饱和”。 :退火温度高,官能团含量低,活性碳二亚胺基较少。

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