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Dynamic molecular interactions between polyurethane and ZIF-8 in a polymer-MOF nanocomposite: Microstructural, thermo-mechanical and viscoelastic effects

机译:聚氨酯和ZIF-8在聚合物-MOF纳米复合材料中的动态分子相互作用:微观结构,热机械和粘弹性效应

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摘要

Polymer-based nanocomposites incorporating porous hybrid materials is fast becoming a staple in addressing environmental and sustainability challenges. Herein we investigate the intricate dynamics underpinning the molecular interactions between the porous nanoparticles of a zeolitic metal-organic framework (ZIF-8) and ahyperelastic polymer matrix (polyurethane, PU). We fabricated novel PU/ZIF-8 mixed-matrix nanocomposite membranes (~100 µm thickness) with up to 40 wt.% ZIF-8 nanoparticles, and characterised their quasistatic and dynamic thermo-mechanical properties viadynamic mechanical measurements, nanoindentation, thermogravimetric and tensile experiments. ZIF-8 nanoparticles significantly modify the thermo-mechanical properties of polyurethane matrix, improving overall stiffness, fracture energy, and yield strength at the cost of ductility (beyond ~30 wt.%). Thermal stability was enhanced, likewise dynamic responses and phase changes were stabilised with increasing nanoparticle loading. Secondary molecular interactions between ZIF-8 nanoparticles and polyurethane chains are responsible for the salient thermomechanical and dynamic behaviour observed. Our findings may guide developments of resilient rubbery-MOF nanocomposite systems for practical applications.
机译:掺入多孔杂交材料的基于聚合物的纳米复合材料在解决环境和可持续性挑战方面快速成为主食。在此,我们研究了沸石金属 - 有机骨架(ZIF-8)和多孔弹性聚合物基质(聚氨酯,PU)之间的多孔纳米颗粒之间的分子相互作用的复杂动力学。我们制造了新型PU / ZIF-8混合基质纳米复合膜(〜100μm厚度),高达40重量%ZIF-8纳米颗粒,并表征其Quasistic和动态的热机械性能,通过动力机械测量,纳米凸缘,热重度和拉伸实验。 ZIF-8纳米颗粒显着改变聚氨酯基质的热机械性能,提高总刚度,断裂能量,并以延性成本(超过〜30重量%)的屈服强度。增强热稳定性,同样具有动态响应和相变,随着纳米颗粒加载而稳定稳定。 ZIF-8纳米颗粒和聚氨酯链之间的二次分子相互作用对观察到的突出的热机械和动态行为负责。我们的研究结果可以指导用于实际应用的弹性橡胶 - MOF纳米复合体系的开发。

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    E.M. Mahdi; Jin-Chong Tan;

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  • 年度 2016
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