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Chemo- and Regioselective Functionalization of Isotactic Polypropylene: A Mechanistic and Structure-Property Study

机译:全同立构聚丙烯的化学和区域选择性官能化:机理和结构性能研究

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摘要

Polyolefins represent a high-volume class of polymers prized for their attractive thermomechanical properties, but the lack of chemical functionality on polyolefins makes them inadequate for many high-performance engineering applications. We report a metal-free postpolymerization modification approach to impart functionality onto branched polyolefins without the deleterious chain-coupling or chain-scission side reactions inherent to previous methods. The identification of conditions for thermally initiated polyolefin C-H functionalization combined with the development of new reagents enabled the addition of xanthates, trithiocarbonates, and dithiocarbamates to a variety of commercially available branched polyolefins. Systematic experimental and kinetic studies led to a mechanistic hypothesis that facilitated the rational design of reagents and reaction conditions for the thermally initiated C-H xanthylation of isotactic polypropylene (iPP) within a twin-screw extruder. A structure-property study showed that the functionalized iPP adheres to polar surfaces twice as strongly as commercial iPP while demonstrating similar tensile properties. The fundamental understanding of the elementary steps in amidyl radical-mediated polyolefin functionalization provided herein reveals key structure-reactivity relationships for the design of improved reagents, while the demonstration of chemoselective and scalable iPP functionalization to realize a material with improved adhesion properties indicates the translational potential of this method.
机译:聚烯烃代表了大量的聚合物,以其诱人的热机械性能而备受赞誉,但聚烯烃缺乏化学功能性使其不足以用于许多高性能工程应用。我们报告了一种无金属的后聚合改性方法,可将官能团赋予支链聚烯烃,而无先前方法固有的有害链偶联或断链副反应。确定热引发的聚烯烃C-H官能化的条件以及开发新试剂,使得能够将黄原酸酯,三硫代碳酸酯和二硫代氨基甲酸酯添加到各种市售的支化聚烯烃中。系统的实验和动力学研究得出了一个机械学假说,该假说促进了双螺杆挤出机中等规聚丙烯(iPP)的热引发C-H异丁烯丙基化(iPP)试剂和反应条件的合理设计。结构性能研究表明,功能化的iPP附着在极性表面上的强度是市售iPP的两倍,同时显示出相似的拉伸性能。本文提供的对酰胺基自由基介导的聚烯烃功能化基本步骤的基本理解揭示了改进试剂设计的关键结构-反应性关系,而化学选择性和可扩展的iPP功能化实现了具有改善的粘合性能的材料的演示则表明了翻译潜力这种方法。

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