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固相热拉伸制备高度取向 PLA/MWNTs 复合材料的结构与血液相容性。

Structure and blood compatibility of highly oriented PLA/MWNTs composites produced by solid hot drawing.

机构信息

1State Key Laboratory of Polymer Materials Engineering of China, Polymer Research Institute of Sichuan University, Chengdu, China.

出版信息

J Biomater Appl. 2014 Mar;28(7):978-89. doi: 10.1177/0885328213490047. Epub 2013 Jun 2.

DOI:10.1177/0885328213490047
PMID:23733838
Abstract

Highly oriented poly(lactic acid) (PLA)/multi-walled carbon nanotubes (MWNTs) composites were fabricated through solid hot drawing technology in an effort to improve the mechanical properties and blood biocompatibility of PLA as blood-contacting medical devices. It was found that proper MWNTs content and drawing orientation can improve the tensile strength and modulus of PLA dramatically. With the increase in draw ratio, the cold crystallization peak became smaller, and the glass transition and the melting peak of PLA moved to high temperature, while the crystallinity increased, and the grain size decreased, indicating the stress-induced crystallization of PLA during drawing. MWNTs showed a nucleation effect on PLA, leading to the rise in the melting temperature, increase in crystallinity and reduction of spherulite size for the composites. Moreover, the intensity of (002) diffraction of MWNTs increased with draw ratio, indicating that MWNTs were preferentially aligned and oriented during drawing. Microstructure observation demonstrated that PLA matrix had an ordered fibrillar bundle structure, and MWNTs in the composite tended to align parallel to the drawing direction. In addition, the dispersion of MWNTs in PLA was also improved by orientation. Introduction of MWNTs and drawing orientation could significantly enhance the blood compatibility of PLA by prolonging kinetic clotting time, reducing hemolysis ratio and platelet activation.

摘要

通过固相热拉伸技术制备了高度取向的聚乳酸(PLA)/多壁碳纳米管(MWNTs)复合材料,以提高 PLA 作为与血液接触的医疗器械的机械性能和血液生物相容性。研究发现,适当的 MWNTs 含量和拉伸取向可以显著提高 PLA 的拉伸强度和模量。随着拉伸比的增加,冷结晶峰变小,PLA 的玻璃化转变和熔融峰向高温移动,结晶度增加,晶粒尺寸减小,表明 PLA 在拉伸过程中发生了应力诱导结晶。MWNTs 对 PLA 具有成核作用,导致复合材料的熔融温度升高、结晶度增加和球晶尺寸减小。此外,MWNTs 的(002)衍射强度随拉伸比的增加而增加,表明 MWNTs 在拉伸过程中优先取向排列。微观结构观察表明,PLA 基体具有有序的纤维束状结构,复合材料中的 MWNTs 倾向于沿拉伸方向平行排列。此外,MWNTs 的取向也改善了其在 PLA 中的分散性。MWNTs 的引入和拉伸取向可以通过延长动力学凝血时间、降低溶血率和血小板活化来显著提高 PLA 的血液相容性。

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