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首页> 外文期刊>Lasers in engineering >Towards a Technique for Controlling Wettability Characteristics and Conditioning Film Formation on Polyethylene Terephthalate (PET) Through Laser Surface Engineering
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Towards a Technique for Controlling Wettability Characteristics and Conditioning Film Formation on Polyethylene Terephthalate (PET) Through Laser Surface Engineering

机译:朝着通过激光表面工程控制聚对苯二甲酸乙二醇酯(PET)对润湿性特性和调节成膜的技术

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摘要

Bacteria attachment to a surface is initiated by the adsorption of molecules to form a conditioning film (protein layer) on the surface of a substratum. The nature of the substratum strongly influences the composition of the adsorbed protein layer which, in turn, affects the interaction of bacterial cells. Fundamental interactions between proteins adsorbed from bacterial growth media (no-cell adhesion) and CO2 laser surface engineered polyethylene terephthalate (PET). the influence of interfacial wetting on the initial film conditioning of the CO2 laser surface engineered PET was analysed using contact angle measurements, elucidating the relationship between surface roughness parameters, wettability characteristics and conditioning film formation. Chemical analysis of the CO2 laser surface engineered PET surfaces revealed that the recorded changes to the surface energy and wettability were the result of surface morphology changes rather than modification of the chemical structure. The conditioning film adsorbed onto the CO2 laser engineered PET surfaces was found to increase the wetting of the samples. This work demonstrates that CO2 laser irradiation of the surface of PET provides a viable means for controlling interfacial wettability characteristics and conditioning film formation, leading to an effective and efficient means of producing anti-bacterial surfaces.
机译:通过吸附分子以在基质表面上形成调理膜(蛋白质层)来引发细菌附着。下碱的性质强烈影响吸附蛋白质层的组成,其又影响细菌细胞的相互作用。从细菌生长培养基(无细胞粘附)和CO2激光表面改造的聚对苯二甲酸乙二醇酯(PET)中吸附的蛋白质之间的基本相互作用。使用接触角测量分析界面润湿对CO2激光表面工程化PET的初始膜调节的影响,阐明了表面粗糙度参数,润湿性特性和调节成膜之间的关系。 CO2激光表面设计的PET表面的化学分析显示,对表面能和润湿性的记录变化是表面形态变化的结果,而不是化学结构的改变。发现吸附在CO2激光工程的PET表面上的调节膜增加样品的润湿。该工作表明,PET表面的CO2激光照射提供了用于控制界面润湿性特性和调节成膜的可行性手段,导致产生抗细菌表面的有效和有效的方法。

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