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首页> 外文期刊>RSC Advances >Large-scale fabrication of highly aligned poly(m-phenylene isophthalamide) nanofibers with robust mechanical strength
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Large-scale fabrication of highly aligned poly(m-phenylene isophthalamide) nanofibers with robust mechanical strength

机译:具有强机械强度的高取向聚(间亚苯基间苯二甲酰胺)纳米纤维的大规模生产

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摘要

Creating a facile and efficient method that can provide large-scale, highly aligned, and high strength nanofibers has proved extremely challenging. This work responds to these challenges by designing and evaluating poly(m-phenylene isophthalamide) (PMIA) nanofibrous materials with robust mechanical strength, which can be fabricated on a large scale via a facile combination of relative humidity (RH)-regulated electrospinning and multi-level aggregate reconstructing. The morphology and structure of the PMIA membranes can be finely controlled by regulating the solution concentration and RH during spinning, and a possible RH-regulated alignment mechanism was proposed. Additionally, PMIA nanofibrous aggregates of yarns and subsequent plaits were built up by multi-level reconstructing. During the first-level reconstructing based on twisting, the structure and mechanical properties of the yarns can be facilely optimized by tuning the twist level, and the PMIA yarns with 3000 TPM possess robust tensile strength of 262 MPa. The second-level reconstructing based on yarns braiding endows the corresponding nano-plaits with the highest tensile strength of 330 MPa. This novel method provides a new insight into the design and development of highly aligned nanomaterials for various applications.
机译:事实证明,创建一种可以提供大规模,高度对齐和高强度纳米纤维的简便有效的方法极具挑战性。这项工作通过设计和评估具有强大机械强度的聚间亚苯基间苯二甲酰胺(PMIA)纳米纤维材料来应对这些挑战,这些材料可以通过相对湿度(RH)调节的静电纺丝和多次纺丝的简便组合而大规模生产。级聚合重建。通过调节纺丝过程中的溶液浓度和相对湿度,可以很好地控制PMIA膜的形貌和结构,并提出了可能的相对湿度调节的取向机理。此外,通过多级重构构建了纱线的PMIA纳米纤维聚集体和随后的辫子。在基于加捻的一级重构过程中,可以通过调整加捻水平来轻松优化纱线的结构和机械性能,并且3000 TPM的PMIA纱线具有262 MPa的强大拉伸强度。基于纱线编织的第二级重构使相应的纳米褶皱具有330 MPa的最高拉伸强度。这种新颖的方法为用于各种应用的高度对齐的纳米材料的设计和开发提供了新的见识。

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