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Integrating Nano-Cu2O@ZrP into In Situ Polymerized Polyethylene Terephthalate (PET) Fibers with Enhanced Mechanical Properties and Antibacterial Activities

机译:将纳米Cu2O @ ZrP集成到​​具有增强的机械性能和抗菌活性的原位聚合聚对苯二甲酸乙二醇酯(PET)纤维中

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摘要

The approach of in situ polymerization modification has proven to be an effective route for introducing functions for polyester materials. In this work, Cu2O@ZrP nanosheets with excellent dispersity and high antibacterial activity were integrated into in situ polymerized polyethylene terephthalate (PET) fibers, revealing an enhanced mechanical performance in comparison with the PET fibers fabricated directly via a traditional melt blending method. Additionally, such an in situ polymerized PET/Cu2O@ZrP fibers displayed highly enhanced mechanical properties; and great antibacterial activities against multi-types of bacterium, including S. aureus, E. coli and C. albicans. For the as-obtained two types of PET/Cu2O@ZrP fibers, we have detailed their molecular weight (detailed molecular weight) and dispersibility of nano-Cu2O@ZrP and fibers crystallinity was investigated by Gel chromatography (GPC), Scanning electron microscope (SEM), and X-ray diffractometer (XRD), respectively. The results showed that the aggregation of the nano-Cu2O@ZrP in the resultant PET matrix could be effectively prevented during its in situ polymerization process, hence we attribute its highly enhanced mechanical properties to its superior dispersion of nano-Cu2O@ZrP.
机译:已证明原位聚合改性方法是引入聚酯材料功能的有效途径。在这项工作中,将具有优异分散性和高抗菌活性的Cu2O @ ZrP纳米片材整合到原位聚合的聚对苯二甲酸乙二醇酯(PET)纤维中,与通过传统的熔融共混法直接制成的PET纤维相比,其机械性能得到了提高。另外,这种原位聚合的PET / Cu2O @ ZrP纤维显示出高度增强的机械性能。对多种类型的细菌(包括金黄色葡萄球菌,大肠杆菌和白色念珠菌)具有出色的抗菌活性。对于已获得的两种类型的PET / Cu2O @ ZrP纤维,我们详细介绍了它们的分子量(详细分子量)和纳米Cu2O @ ZrP的分散性,并通过凝胶色谱(GPC),扫描电子显微镜( SEM和X射线衍射仪(XRD)。结果表明,在原位聚合过程中,可以有效防止纳米Cu2O @ ZrP在PET基体中的聚集,因此我们将其高度增强的机械性能归因于其优异的纳米Cu2O @ ZrP分散性。

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