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用于生物医学应用的柔性聚氨酯膜增强的水和氧气阻隔性能。

Enhanced water and oxygen barrier performance of flexible polyurethane membranes for biomedical application.

作者信息

Marcano Aracelys, Fatyeyeva Kateryna, Koun Malys, Dubuis Pascal, Grimme Marc, Chappey Corinne, Marais Stéphane

机构信息

Normandie Université, UNIROUEN, INSA ROUEN, CNRS, Polymères Biopolymères Surfaces (PBS), Rouen, France.

CARMAT SA, Vélizy Villacoublay, France.

出版信息

J Biomed Mater Res A. 2022 Jan;110(1):105-121. doi: 10.1002/jbm.a.37269. Epub 2021 Jul 20.

Abstract

In order to improve water and oxygen barrier properties, the surface of two commercial medical grade polyurethane (PU) membranes (Chronoflex® AR-LT and Bionate® II) was modified by a spray deposited film of poly(ethylene-co-vinyl alcohol) (EVOH). The influence of the temperature, the deposited layer thickness and the EVOH ethylene group percentage (27%, 32%, and 44% for EVOH27, EVOH32, and EVOH44, respectively) on the barrier properties of the PU/EVOH multilayered membranes was investigated. The increase of the EVOH layer thickness leads to higher oxygen barrier properties (the highest barrier improvement factor of 412 was obtained). However, in case of the deposited layer thickness higher than 18 μm, microcracks appeared on the treated surface promote a significant loss of the barrier effect. Due to its higher crystallinity degree, EVOH27 provides a higher oxygen barrier effect compared to EVOH32 and EVOH44. On the contrary, an increase of the water barrier properties was observed with the increase of the percentage of ethylene groups. Moreover, the delamination of the EVOH layer was noted after water permeation, especially in case of EVOH44, which is the most hydrophobic layer. Nevertheless, significant decrease of the water and oxygen permeability of the modified PU membranes was achieved, thus showing the benefit of using the EVOH spray deposition for the biomedical application, which requires high performance material with flexible and barrier properties.

摘要

为了提高水和氧气阻隔性能,通过喷涂聚(乙烯 - 共 - 乙烯醇)(EVOH)薄膜对两种商用医用级聚氨酯(PU)膜(Chronoflex® AR - LT和Bionate® II)的表面进行改性。研究了温度、沉积层厚度以及EVOH乙烯基团百分比(EVOH27、EVOH32和EVOH44的乙烯基团百分比分别为27%、32%和44%)对PU/EVOH多层膜阻隔性能的影响。EVOH层厚度的增加导致更高的氧气阻隔性能(获得了高达412的最高阻隔改善因子)。然而,当沉积层厚度高于18μm时,处理后的表面出现微裂纹,导致阻隔效果显著丧失。由于其较高的结晶度,与EVOH32和EVOH44相比,EVOH27具有更高的氧气阻隔效果。相反,随着乙烯基团百分比的增加,观察到水阻隔性能有所提高。此外,在水渗透后注意到EVOH层出现分层,特别是在最疏水的EVOH44层的情况下。尽管如此,改性PU膜的水和氧气渗透率显著降低,从而表明了在生物医学应用中使用EVOH喷涂沉积的益处,该应用需要具有柔韧性和阻隔性能的高性能材料。

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