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Molecular-Level Investigation of Cycloaliphatic Epoxidised Ionic Liquids as a New Generation of Monomers for Versatile Poly(Ionic Liquids)

机译:脂环族环氧化离子液体作为新一代单体的多种单体进行含量(离子液体)

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摘要

Recently, a new generation of polymerised ionic liquids with high thermal stability and good mechanical performances has been designed through novel and versatile cycloaliphatic epoxy-functionalised ionic liquids (CEILs). From these first promising results and unexplored chemical structures in terms of final properties of the PILs, a computational approach based on molecular dynamics simulations has been developed to generate polymer models and predict the thermo–mechanical properties (e.g., glass transition temperature and Young’s modulus) of experimentally investigated CEILs for producing multi-functional polymer materials. Here, a completely reproducible and reliable computational protocol is provided to design, test and tune poly(ionic liquids) based on epoxidised ionic liquid monomers for future multi-functional thermoset polymers.
机译:最近,通过新颖的和多功能的环脂族环氧官能化离子液体(CEILs)设计了具有高热稳定性和良好机械性能的新一代具有高热稳定性和良好机械性能的聚合离子液体。从这些第一个有前途的结果和未开发的化学结构在PIL的最终性质方面,已经开发了一种基于分子动力学模拟的计算方法来产生聚合物模型并预测热机械性能(例如,玻璃化转变温度和杨氏模量)实验研究的CEILS生产多功能聚合物材料。这里,提供了一种完全可重复和可靠的计算协议,用于基于环氧化离子液体单体来设计,测试和调谐聚(离子液体),用于未来的多功能热固性聚合物。

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