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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Functionalized Elastomeric Ionomers Used as Effective Toughening Agents for Poly(lactic acid): Enhancement in Interfacial Adhesion and Mechanical Performance
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Functionalized Elastomeric Ionomers Used as Effective Toughening Agents for Poly(lactic acid): Enhancement in Interfacial Adhesion and Mechanical Performance

机译:用作聚(乳酸)的有效增韧剂的官能化弹性聚物:界面粘附和机械性能的增强

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摘要

A series of elastomeric ionomers functionalized with different imidazolium-based cations were synthesized by a facile and efficient quaternization reaction from commercial bromobutyl rubber (BIIR) and different functionalized imidazoles, including 1-ethylimidazole, N-(2-hydroxyethyl)imidazole, newly designed 1-(11'-hydroxyundecyl)imidazole, and N-[3-(1H-imidazol-1-yl)propyl]-hexanamide. These BIIR-based elastomeric ionomers (i-BIIRs) with a balanced mechanical performance, interfacial polar interactions, and a suitable processability were employed as novel modifying agents for poly(lactic acid) (PLA) to achieve highly toughened sustainable blends. The influence of the cationic structure of these ionomers and blend ratio on the compatibility and mechanical performance of the blends was thoroughly investigated. The introduction of polar hydroxyl groups with varied alkyl lengths or an amide group into the imidazolium cation of the i-BIIRs markedly improved the compatibility and impact toughness of the PLA/i-BIIR blends, relative to those of the pure BIIR and the i-BIIR ionomers without functional polar groups. These PLA/i-BIIR ionomer blends exhibited an excellent flexibility stiffness balance, in which the highest elongation at break up to 300% was achieved with a small loss in stiffness. An impressively high impact strength of 17.1 kJ/m(2) was achieved for the PLA and i-BIIR-11-OH (80/20) blends, and this impact strength is almost 6 times that of the neat PLA. The interfacial adhesion between the evenly dispersed small ionomer and PLA matrix was improved because the synergistic multiple intermolecular interaction is the native mechanism for enhancing the toughness and flexibility of the blends.
机译:通过从商业溴丁基橡胶(BIIR)和不同官能化咪唑的容易和有效的季唑,包括1-乙基咪唑,N-(2-羟乙基)咪唑,新设计的1 - (11'-羟基癸基)咪唑和N- [3-(1H-咪唑-1-基)丙基]-己酰胺。这些基于比亚利的弹性体离聚物(I-BIIR)具有平衡的机械性能,界面极性相互作用和合适的加工性,作为多种(乳酸)(PLA)的新型改性剂,以实现高度增韧的可持续混合物。彻底研究了这些离聚物的阳离子结构和混合比对共混物的相容性和机械性能的影响。将具有变化的烷基长度或酰胺组的极性羟基引入I-BIIR的咪唑阳离子中,显着提高了PLA / I-BIIR共混物的相容性和冲击韧性,相对于纯比尔和I-没有功能性极性基团的BIIR离聚物。这些PLA / I-BIIR离聚物共混物表现出优异的柔韧性刚度平衡,其中,在刚度的损失小的损失下,实现了最高伸长率。对于PLA和I-BiiR-11-OH(80/20)混合物实现了17.1kJ / m(2)的令人印象深刻的高冲击强度,并且这种冲击强度几乎是整洁PLA的6倍。改善了均匀分散的小离聚物和PLA基质之间的界面粘附,因为协同多分子间相互作用是提高共混物的韧性和柔韧性的天然机制。

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