首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Photodynamic-active smart biocompatible material for an antibacterial surface coating
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Photodynamic-active smart biocompatible material for an antibacterial surface coating

机译:用于抗菌表面涂层的光动力学 - 活性智能生物相容性材料

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摘要

Here we present a new effective antibacterial material suitable for a coating, e.g., surface treatment of textiles, which is also time and financially undemanding. The most important role is played by hydrophobic carbon quantum dots, as a new type of photosensitizer, produced by carbonization of different carbon precursors, which are incorporated by swelling from solution into various polymer matrices in the form of thin films, in particular polyurethanes, which are currently commercially used for industrial surface treatment of textiles. The role of hydrophobic carbon quantum dots is to work as photosensitizers upon irradiation and produce reactive oxygen species, namely singlet oxygen, which is already known as the most effective radical for elimination different kinds of bacteria on the surface or in close proximity to such modified material. Therefore, we have mainly studied the effect of hydrophobic carbon quantum dots on Staphylococcus aureus and the cytotoxicity tests, which are essential for the safe handling of such material. Also, the production of singlet oxygen by several methods (electron paramagnetic spectroscopy, time-resolved near-infrared spectroscopy), surface structures (atomic force microscopy and contact angle measurement), and the effect of radiation on polymer matrices were studied. The prepared material is easily modulated by end-user requirements.
机译:在这里,我们提出了一种适用于涂层的新的有效抗菌材料,例如纺织品的表面处理,这也是时间和经济上的未定。疏水性碳量子点作为一种新的光敏剂,作为一种新型光敏剂,通过碳化在不同的碳磷中产生的一种新型光敏剂,通过从薄膜的形式溶解成各种聚合物基质,特别是聚氨酯目前是商业用作纺织品的工业表面处理。疏水性碳量子点的作用是在照射并产生反应性氧物质时用作光敏剂,即单身氧,其已知为消除表面上的不同种类的细菌或紧密地对这种改进的材料相近的最有效的自由基。因此,我们主要研究了疏水性碳量子点对金黄色葡萄球菌和细胞毒性试验的影响,这对于这种材料的安全处理至关重要。此外,研究了几种方法(电子顺笔谱,时间分辨近红外光谱),表面结构(原子力显微镜和接触角测量)的生产,以及辐射对聚合物基质的影响。通过最终用户要求易于调制制备的材料。

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