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The Role of Anatase Nanoparticles on the Mechanical Properties and the Bacterial Adhesion to Acrylonitrile-Butadiene-Styrene Terpolymer

机译:锐钛矿型纳米颗粒对丙烯腈-丁二烯-苯乙烯三元共聚物的机械性能和细菌粘附的作用

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This work aims to synthesize composite material which combines adequate mechanical properties and high resistance to bacterial adhesion. Such materials are needed in many components in the medical, industrial, and environmental applications. To obtain that combination, high weight percents of anatase nanoparticles, as bacterial adhesion reducer, were incorporated into a matrix of the ABS terpolymer. Pseudomonas aeruginosa , Staphylococcus aureus , and Klebsiella pneumonia were selected for the bacterial adhesion tests. The surface properties of the composites were investigated and correlated to the adhesion behavior using nonlinear regression technique. It has been found that adding anatase nanoparticles improves the stiffness and the compressive strength of the terpolymer with a noticeable reduction in the flexural strength due to the development of minor defects in the structure. Nevertheless, a composite containing 10 wt% of anatase nanoparticles exhibited an interesting and adequate combination of the mechanical properties and the resistance to bacterial adhesion. The regression analysis produced a mathematical formula that excellently fits the experimental data. Such formula can be used to predict the bacterial adhesion to a surface based on its multi-scale features.
机译:这项工作旨在合成具有足够的机械性能和高抗细菌粘附性的复合材料。在医疗,工业和环境应用的许多组件中都需要这种材料。为了获得该组合,将高重量百分比的锐钛矿型纳米颗粒作为细菌附着力降低剂掺入ABS三元共聚物的基质中。选择铜绿假单胞菌,金黄色葡萄球菌和肺炎克雷伯菌进行细菌粘附试验。使用非线性回归技术研究了复合材料的表面性能,并将其与粘附行为相关联。已经发现添加锐钛矿纳米颗粒改善了三元共聚物的刚度和抗压强度,并且由于结构中微小缺陷的发展而显着降低了挠曲强度。然而,包含10重量%的锐钛矿纳米颗粒的复合物表现出机械性能和对细菌粘附的抵抗力的有趣且充分的组合。回归分析产生了非常适合实验数据的数学公式。这样的公式可用于基于其多尺度特征来预测细菌对表面的粘附。

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