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Wood flour modified by hierarchical Ag/ZnO as potential filler, for wood-plastic composites with enhanced surface antibacterial performance

机译:经分级Ag / ZnO改性的木粉作为潜在的填料,用于具有增强的表面抗菌性能的木塑复合材料

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In order to extend application potential of wood plastic composites (WPC) in interiors with respect to hygienic requirements, wood flour (WF) was modified by nanosilver, nanostructured ZnO and hybrid nanostructured Ag/ZnO surface decorations. A microwave assisted solvothermal synthesis method was employed starting from soluble precursors. Composition of source chemicals and synthesis protocol were intentionally varied to prepare different materials and elucidate the reaction mechanism. Obtained modified wood flour were compounded into a model PVC matrix to assess their antibacterial performance. The surface antibacterial activity was tested according to ISO 22196: 2007 (E) standard. Single silver or ZnO modified WF have significantly lower efficiency than hybrid Ag/ZnO decorating the surface of WF particles. A simple variation of the synthesis method by additional ammonia precipitation step increased largely the performance of the material and excellent efficiency comparable with contemporary medical grade materials was achieved, suggesting the great application potential of investigated systems in WPC-based materials. (C) 2014 Elsevier B.V. All rights reserved
机译:为了扩大木质塑料复合材料(WPC)在室内卫生方面的应用潜力,对木粉(WF)进行了纳米银,纳米结构ZnO和混合纳米结构Ag / ZnO表面装饰的改性。从可溶性前体开始采用微波辅助溶剂热合成方法。故意改变原料化学物质的组成和合成规程以制备不同的材料并阐明反应机理。将获得的改性木粉混入模型PVC基质中,以评估其抗菌性能。根据ISO 22196:2007(E)标准测试了表面抗菌活性。单银或ZnO修饰的WF的效率明显低于装饰WF颗粒表面的混合Ag / ZnO。通过额外的氨沉淀步骤对合成方法进行简单的改动,大大提高了材料的性能,并获得了与现代医学级材料相当的出色效率,这表明研究系统在WPC基材料中具有巨大的应用潜力。 (C)2014 Elsevier B.V.保留所有权利

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