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首页> 外文期刊>ACS Macro Letters >Mechanochemical Strengthening of a Multi-mechanophore Benzocyclobutene Polymer
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Mechanochemical Strengthening of a Multi-mechanophore Benzocyclobutene Polymer

机译:多机理苯并环丁烯聚合物的机械化学强化

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The mechanical stresses that materials experience during use can lead to aging and failure. Recent developments in covalent mechanochemistry have provided a mechanism by which those stresses can be channeled into constructive, rather than destructive, responses, including strengthening in materials. Here, the synthesis and mechanical response of a polymer containing multiple benzocyclobutene (BCB) mechanophores along its backbone are reported. When solutions of the BCB polymer were exposed to the normally destructive elongational flow forces generated by pulsed ultrasonication, the number of intermolecular bond-forming reactions was greater than the number of bond-breaking reactions, leading to a net increase in polymer molecular weight. The molecular weight increase could be turned into gelation by introducing a bismaleimide cross-linker that reacts with the ortho-quinodirnethide intermediate generated by mechanically assisted ring opening of the BCB mechanophores and using polymer concentrations in excess of the critical overlap concentration. Unlike a previous mechanically induced gelation of a mechanophore-based polymer, the BCB cross-linking requires no ionic components and represents an attractive, second platform for stress-strengthening materials.
机译:材料在使用过程中承受的机械应力会导致老化和故障。共价机械化学的最新发展提供了一种机制,通过这些机制可以将这些压力传递给建设性而非破坏性的反应,包括增强材料。在此,报道了沿其主链包含多个苯并环丁烯(BCB)机理的聚合物的合成和机械响应。当BCB聚合物溶液暴露于脉冲超声产生的通常具有破坏性的伸长流动力时,分子间键形成反应的数量大于键断裂反应的数量,从而导致聚合物分子量的净增加。通过引入双马来酰亚胺交联剂可以使分子量增加变成凝胶化,该双马来酰亚胺交联剂与由BCB机理的机械辅助开环产生的邻喹啉二乙炔中间体反应,并使用超过临界重叠浓度的聚合物浓度。与先前的机械诱导的基于机械力的聚合物的凝胶化不同,BCB交联不需要离子成分,并且代表了用于应力增强材料的有吸引力的第二平台。

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