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同时添加聚己内酯和碳纳米管对离子液体固化环氧树脂的力学、电学及粘附性能的影响

Effect of the Simultaneous Addition of Polycaprolactone and Carbon Nanotubes on the Mechanical, Electrical, and Adhesive Properties of Epoxy Resins Cured with Ionic Liquids.

作者信息

Orduna Lidia, Otaegi Itziar, Aranburu Nora, Guerrica-Echevarría Gonzalo

机构信息

POLYMAT and Department of Advanced Polymers and Materials: Physics, Chemistry and Technology, Faculty of Chemistry, University of the Basque Country (UPV/EHU), Paseo Manuel de Lardizabal 3, 20018 Donostia-San Sebastian, Spain.

出版信息

Polymers (Basel). 2023 Mar 23;15(7):1607. doi: 10.3390/polym15071607.

Abstract

Electrically-conductive epoxy nanocomposites (NCs) with improved mechanical and adhesive properties were achieved through the combined addition of poly(ε-caprolactone) (PCL) and carbon nanotubes (CNTs). Three different ionic liquids (ILs) were used as dual role agents, i.e., as both curing and dispersing agents. Regardless of the IL used, the epoxy/PCL matrix of the NCs showed a single-phase behaviour and similar glass transition (T) and crosslinking density (ν) values to the unfilled epoxy/PCL/IL systems. Although the CNTs were more poorly dispersed in the epoxy/PCL/CNT/IL NCs than in the reference epoxy/CNT/IL NCs, which led to slightly lower electrical conductivity values, the epoxy/PCL/CNT/IL NCs were still semiconductive. Their low-strain mechanical properties (i.e., flexural modulus and flexural strength) were similar or better than those of the reference epoxy/IL systems and their high-strain mechanical properties (i.e., deformation at break and impact strength) were significantly better. In addition, the positive effects of the PCL and the CNTs on the adhesive properties of the epoxy/IL system were combined. The substitution of ILs for traditional amine-based curing agents and biodegradable PCL for part of the epoxy resin represents an important advance on the road towards greater sustainability.

摘要

通过同时添加聚(ε-己内酯)(PCL)和碳纳米管(CNT),制备出了具有改善的机械性能和粘合性能的导电环氧纳米复合材料(NCs)。三种不同的离子液体(ILs)用作双重作用剂,即作为固化剂和分散剂。无论使用哪种IL,NCs的环氧/PCL基体都表现出单相行为,并且其玻璃化转变温度(T)和交联密度(ν)值与未填充的环氧/PCL/IL体系相似。尽管与参考环氧/CNT/IL NCs相比,CNTs在环氧/PCL/CNT/IL NCs中的分散性较差,这导致电导率值略低,但环氧/PCL/CNT/IL NCs仍为半导体。它们的低应变机械性能(即弯曲模量和弯曲强度)与参考环氧/IL体系相似或更好,其高应变机械性能(即断裂时的变形和冲击强度)明显更好。此外,PCL和CNTs对环氧/IL体系粘合性能的积极作用得到了结合。用ILs替代传统的胺类固化剂,并用可生物降解的PCL替代部分环氧树脂,这是在实现更大可持续性的道路上迈出的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b72/10097337/071d072ee9aa/polymers-15-01607-g001.jpg

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