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Self-assembled AuNPs for ingrain pigmentation of silk fabrics with antibacterial potency

机译:具有抗菌性效力的自动组装成蚕丝丝织物的蚕丝饰面

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Nanogold was self-assembled for ingrain pigmentation of silk fabric with antibacterial properties. The functional groups of silk macromolecular polymeric chains were exploited for generation and stabilization of nanogold. Hydrogen peroxide was used for activation of silk molecular chains through increasing their reactivity and accessibility to be functionalized as manufacturer of nanogold without using any external agents. Effect of procedure sequencing was studied through addition of peroxide firstly (group A) and with Au salt (group B). Self-assembly of nanogold inside fabric was confirmed by electron microscope, X-ray diffraction and absorbance spectra. The particle size of the nanogold within fabric was estimated to be in range of 22-66 nm (group A) and 18-49 nm (group B). Due to LSPR of nanogold, silk fabrics were acquired violet color with good fastness properties. In distilled water and artificial sweat, 33.5-41.0% and 46.2-50.4% of Au was leached out from silk fabric, respectively after 24 h. Very good antibacterial properties were estimated for ingrain colored fabric against E. coli and S. aureus via using the optical density measurements. Quite simplicity, timelessness and energy saving are advantages which were realized in the current work for silk functionalization. (C) 2017 Elsevier B.V. All rights reserved.
机译:Nanogold被自组装成丝织物的丝织物,具有抗菌性质。利用丝颗粒聚合物链的官能团进行纳米盘的产生和稳定化。通过提高其作为纳米盘制造商的反应性和可用性,使用过氧化氢来激活丝分子链,而不使用任何外部试剂。通过第一(A)和Au盐(B组)加入过氧化物来研究程序测序的效果。通过电子显微镜,X射线衍射和吸光度光谱确认亚圆形内织物内的自组装。织物内纳米变的粒径估计为22-66nm(A)和18-49nm(B组)。由于纳米槽的LSPR,丝绸织物被获得紫色颜色,牢度良好。在蒸馏水和人造汗水中,33.5-41.0%和46.2-50.4%的Au分别从丝绸面料浸出24小时后。使用光密度测量,估计对Emlig族织物的抗菌性质非常良好的抗菌性能。相当简单,永恒和节能是在目前为丝官能化的工作中实现的优点。 (c)2017年Elsevier B.V.保留所有权利。

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