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Maskless Surface Modification of Polyurethane Films by an Atmospheric Pressure He/O2 Plasma Microjet for Gelatin Immobilization

机译:大气压He / O2等离子体微喷技术对明胶固定化聚氨酯薄膜的无掩模表面改性

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摘要

A localized maskless modification method of polyurethane (PU) films through an atmospheric pressure He/O2 plasma microjet (APPμJ) was proposed. The APPμJ system combines an atmospheric pressure plasma jet (APPJ) with a microfabricated silicon micronozzle with dimension of 30 μm, which has advantages of simple structure and low cost. The possibility of APPμJ in functionalizing PU films with hydroxyl (–OH) groups and covalent grafting of gelatin for improving its biocompatibility was demonstrated. The morphologies and chemical compositions of the modified surface were analyzed by scanning electronic microscopy (SEM), Raman spectroscopy, and X-ray photoelectron spectroscopy (XPS). The fluorescent images show the modified surface can be divided into four areas with different fluorescence intensity from the center to the outside domain. The distribution of the rings could be controlled by plasma process parameters, such as the treatment time and the flow rate of O2. When the treatment time is 4 to 5 min with the oxygen percentage of 0.6%, the PU film can be effectively local functionalized with the diameter of 170 μm. In addition, the modification mechanism of PU films by the APPμJ is investigated. The localized polymer modified by APPμJ has potential applications in the field of tissue engineering.
机译:提出了一种通过大气压He / O2等离子体微喷(APPμJ)对聚氨酯(PU)薄膜进行局部无掩模改性的方法。该APPμJ系统结合了常压等离子体射流(APPJ)和尺寸为30μm的微细硅微喷嘴,具有结构简单,成本低廉的优点。证明了APPμJ在使带有羟基(-OH)的PU膜功能化和共价接枝明胶以改善其生物相容性方面的可能性。通过扫描电子显微镜(SEM),拉曼光谱和X射线光电子能谱(XPS)分析改性表面的形态和化学组成。荧光图像显示,从中心区域到外部区域,修改后的表面可以分为四个具有不同荧光强度的区域。环的分布可以通过等离子工艺参数来控制,例如处理时间和氧气流量。当氧含量为0.6%的处理时间为4到5分钟时,可以有效地局部处理直径为170μm的PU膜。另外,研究了APPμJ对PU膜的改性机理。 APPμJ修饰的局部聚合物在组织工程领域具有潜在的应用。

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