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Photochemical surface modification of polyurethane films with biomaterial by excimer laser processing

机译:准分子激光处理生物材料对聚氨酯薄膜的光化学表面改性

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Abstract: The surface chemical modification of polyurethane (PU) films was performed by a UV laser-induced chemical reaction in a polysaccharide solution. This was undertaken with the possible application of hydrophilic packaging of implantable medical devices and in-vivo sensors. When a PU film in an aqueous alginic acid (AAC) solution was irradiated with the XeCl laser, it turned hydrophilic. Contact angles of water on the film were changed from 110$DGR to 60$DGR@. Since the absorption of AAC solution at 308 nm was negligibly small, the laser irradiation produced reactive sites solely on the PU surface, where AAC could be immobilized by chemical bonds. The mechanism for the modification was investigated by surface analyses with Fourier transform infrared spectroscopy and a photometric dye staining technique. This hydrophilic modification was interpreted as nanometer-scaled grafting of AAC induced by one-photon photochemical processes.!16
机译:摘要:聚氨酯(PU)膜的表面化学改性是通过在多糖溶液中进行UV激光诱导的化学反应进行的。这是通过可植入医疗设备和体内传感器的亲水包装的可能应用来实现的。当用XeCl激光辐照藻酸水溶液(AAC)中的PU膜时,它变成亲水性的。薄膜上水的接触角从110 $ DGR更改为60 $ DGR @。由于AAC溶液在308 nm处的吸收很小,可以忽略不计,因此激光辐照仅在PU表面产生反应位点,而在该表面上AAC可以通过化学键固定。通过傅里叶变换红外光谱和光度染料染色技术进行表面分析,研究了修饰的机理。这种亲水性修饰被解释为由单光子光化学过程诱导的AAC的纳米级接枝。16

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