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使用基于亚胺的环氧类可降解交联聚合物制造用于医疗应用的抗菌碳纤维增强塑料(CFRP)。

Manufacture of antibacterial carbon fiber-reinforced plastics (CFRP) using imine-based epoxy vitrimer for medical application.

作者信息

Kim Wonbin, Kim Yong Min, Song SeungHyeon, Kim Eunjung, Kim Dong-Gyun, Jung Yong Chae, Yu Woong-Ryeol, Na WonJin, Choi Yong-Seok

机构信息

Composites Materials Application Research Center, Korea Institute of Science and Technology, 92 Chudong-ro, Bongdong-eup, Wanju-gun, Jeonbuk, 55324, Republic of Korea.

Department of Material Science and Engineering and Research Institute of Advanced Materials (RIAM), Seoul National University, Seoul, 151-742, Republic of Korea.

出版信息

Heliyon. 2023 Jun 2;9(6):e16945. doi: 10.1016/j.heliyon.2023.e16945. eCollection 2023 Jun.

Abstract

An antibacterial carbon fiber-reinforced plastics (CFRP) was manufactured based on a vitrimer containing imine groups. A liquid curing agent was prepared to include an imine group in the matrix, and was synthesized without a simple mixing reaction and any purification process. The vitrimer used as the matrix for CFRP was prepared by reacting a commercial epoxy with a synthesized curing agent. The structural and thermal properties of the vitrimer were determined by Fourier transform-infrared spectroscopy (FT-IR), differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA). In addition, the temperature-dependent behavior of the vitrimer was characterized by stress relaxation, reshaping, and shape memory experiments. The mechanical properties of composites fabricated using vitrimer were fully analyzed by tensile, flexural, short-beam strength, and Izod impact tests and had mechanical properties similar to reference material. Moreover, both the vitrimer and the vitrimer composites showed excellent antibacterial activity against and due to the imine group inside the vitrimer. Therefore, vitrimer composites have potential for applications requiring antimicrobial properties, such as medical devices.

摘要

基于一种含亚胺基团的可修复高分子材料制备了一种抗菌碳纤维增强塑料(CFRP)。制备了一种液体固化剂,使其在基体中包含亚胺基团,且该固化剂无需简单混合反应和任何纯化过程即可合成。用作CFRP基体的可修复高分子材料是通过将市售环氧树脂与合成的固化剂反应制备的。通过傅里叶变换红外光谱(FT-IR)、差示扫描量热法(DSC)和热重分析(TGA)确定了可修复高分子材料的结构和热性能。此外,通过应力松弛、重塑和形状记忆实验对可修复高分子材料随温度变化的行为进行了表征。通过拉伸、弯曲、短梁强度和悬臂梁冲击试验全面分析了使用可修复高分子材料制备的复合材料的力学性能,其力学性能与参考材料相似。此外,由于可修复高分子材料内部的亚胺基团,可修复高分子材料及其复合材料对[具体菌种1]和[具体菌种2]均表现出优异的抗菌活性。因此,可修复高分子材料复合材料在需要抗菌性能的应用领域,如医疗设备方面具有应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23f9/10272483/90cac00ae922/ga1.jpg

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