首页> 美国卫生研究院文献>Polymers >Simultaneous Enhancement of Photocatalytic Bactericidal Activity and Strength Properties of Acrylonitrile-Butadiene-Styrene Plastic Via a Facile Preparation with Silane/TiO2
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Simultaneous Enhancement of Photocatalytic Bactericidal Activity and Strength Properties of Acrylonitrile-Butadiene-Styrene Plastic Via a Facile Preparation with Silane/TiO2

机译:通过硅烷/ TiO2的快速制备同时增强丙烯腈-丁二烯-苯乙烯塑料的光催化杀菌活性和强度性能

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摘要

This work aims to enhance the photocatalytic antibacterial performance of plastics according to the JIS Z 2801:2010 standard, and to determine their mechanical properties by studying: (i) the influence of calcination on titanium dioxide (TiO ); (ii) modification with different TiO concentrations, and; (iii) the effect of silane as a coupling agent. Acrylonitrile-butadiene-styrene plastics (ABS) and ( ) were chosen as the model plastic and bacteria, respectively. The 500 °C calcined TiO successfully provided the best photoantibacterial activity, with an approximately 62% decrease of colony counts following 30 min of exposure. Heat treatment improved the crystallinity of anatase TiO , resulting in low electron-hole recombination, while effectively adsorbing reactants on the surface. ABS with 500 °C-calcined TiO at the concentration of 1 wt % gave rise to the highest performance due to the improved distribution of TiO . At this point, blending silane coupling agent could further improve the efficacy of photoantibacterial activity up to 75% due to greater interactions with the polymer matrix. Moreover, it could promote a 1.6-fold increase of yield strength via increased adherent bonding between TiO and the ABS matrix. Excellent photocatalytic and material stability can be achieved, with constant photocatalytic efficiency remaining for up to five reuse cycles without loss in the yield strength.
机译:这项工作旨在根据JIS Z 2801:2010标准增强塑料的光催化抗菌性能,并通过研究以下方法确定其机械性能:(i)煅烧对二氧化钛(TiO)的影响; (ii)用不同的TiO浓度进行改性;和(iii)硅烷作为偶联剂的作用。分别选择丙烯腈-丁二烯-苯乙烯塑料(ABS)和()作为模型塑料。 500°C煅烧的TiO成功地提供了最佳的光抗菌活性,暴露30分钟后菌落数减少了约62%。热处理提高了锐钛矿型TiO的结晶度,导致低的电子-空穴复合,同时有效地吸附了表面上的反应物。浓度为1 wt%的500°C煅烧TiO的ABS由于改善了TiO的分布而产生了最高的性能。在这一点上,由于与聚合物基体的相互作用较大,共混硅烷偶联剂可进一步提高光抗菌活性的效力,最高可达75%。此外,它可以通过增加TiO与ABS基体之间的粘合力而使屈服强度提高1.6倍。可以实现出色的光催化性能和材料稳定性,同时在多达五个重复使用周期内保持恒定的光催化效率,而不会降低屈服强度。

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