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Designing Imidazolium Poly(amide-amide) and Poly(amide-imide) Ionenes and Their Interactions with Mono- and Tris(imidazolium) Ionic Liquids

机译:设计咪唑鎓聚(酰胺酰胺)和聚(酰胺 - 酰亚胺)离子和与单咪唑(咪唑鎓)离子液体的相互作用

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摘要

Here we introduce the synthesis and thermal properties of a series of sophisticated imidazolium ionenes with alternating amide-amide or amide-imide backbone functionality, and investigate the structural effects of mono(imidazolium) and unprecedented tris(imidazolium) ionic liquids (ILs) in these ionenes. The new set of poly(amide-amide) (PAA) and poly(amide-imide) (PAI) ionenes represent the intersection of conventional high-performance polymers with the ionene archetype–presenting polymers with alternating functional and ionic elements precisely sequenced along the backbone. The effects of polymer composition on the thermal properties and morphology were analyzed. Five distinct polymer backbones were synthesized and combined with a stoichiometric equivalent of the IL 1-benzyl-3-methylimidazolium bistriflimide ([Bnmim][Tf2N]), which were studied to probe the self-assembly, structuring, and contributions of intermolecular forces when IL is added. Furthermore, three polyamide (PA) or polyimide (PI) ionenes with simpler xylyl linkages were interfaced with [Bnmim][Tf2N] as well as a novel amide-linked tris(imidazolium) IL, to demonstrate the structural changes imparted by the inclusion of functional, ionic additives dispersed within the ionene matrix. This work highlights the possibilities for utilizing concepts from small molecules which exhibit supramolecular self-assembly to guide creative design and manipulate the structuring of ionenes.
机译:在这里,我们介绍了一系列复杂的咪唑鎓离子的合成和热性质,具有交替的酰胺 - 酰胺或酰胺 - 酰亚胺骨架官能度,并研究了单(咪唑鎓)和前所未有的TRIS(Imidazolium)离子液体(ILS)的结构效果离子。新的聚(酰胺 - 酰胺)(PAA)和聚(酰胺 - 酰亚胺)(PAI)离子(PAI)I离子代表常规高性能聚合物与IONENE原型呈递聚合物,其具有交替的功能和离子元素沿着骨干。分析了聚合物组合物对热性质和形态的影响。合成五种不同的聚合物骨架,并将其与IL 1-苄基-3-甲基咪唑鎓亲本体([Bnmim] [TF2N])合成,这是研究的,以探测分子间力的自组装,结构化和贡献il被添加。此外,具有更简单的Xylyl键的三种聚酰胺(PA)或聚酰亚胺(PI)离子与[Bnmim] [TF2N]以及新的酰胺连接的Tris(Imidazolium)IL界面,以证明赋予的结构变化分散在IONENE基质中的功能性,离子添加剂。这项工作突出了利用来自展示超分子自组装的小分子概念来引导创造性设计并操纵离子的结构。

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