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首页> 外文期刊>European Polymer Journal >In-situ and ex-situ synthesis of poly-(imidazolium vanillyl)-grafted chitosan/silver nanobiocomposites for safe antibacterial finishing of cotton fabrics
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In-situ and ex-situ synthesis of poly-(imidazolium vanillyl)-grafted chitosan/silver nanobiocomposites for safe antibacterial finishing of cotton fabrics

机译:原位和原位合成聚 - (咪唑鎓Vanillyl) - 移植壳聚糖/银纳米纤维复合材料,用于棉织物的安全抗菌精加工

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摘要

Current work offers two simple synthetic routes for the production of poly-(imidazolium vanillyl)-grafted oligochitosan Schiff bases (PIVCSBs) and their silver nano-biocomposites (NBCs). First, a green in-situ protocol for preparation of silver nanoparticles (AgNPs) using PIVCSBs as a synergetic reductant and capping agent to afford PIVCSBs/Ag-in NBCs. Contrariwise, in the ex-situ protocol the AgNPs were initially fabricated and then capped by PIVCSBs to fabricate PIVCSBs/Ag-ex NBCs. Structural, morphological and physicochemical features of new architectures were examined by diverse techniques. The obtained NBCs were applied as cotton fabrics antibacterial finishing additives via a pad-dry-curing method. The obtained data revealed that the AgNPs produced by in-situ approach are spherical, smaller size, well-stabilized, and uniformly distrusted when compared with that formed using ex-situ technique as proved by UV-Vis, SEM micrographs and TEM techniques. Moreover, the antibacterial properties of cotton-treated fabrics were evaluated against E. coli and S. aureus species and acquired very strong bactericidal activity to cotton fabrics.
机译:目前的工作提供了两种简单的合成路线,用于生产聚 - (咪唑鎓Vanillyl) - 移植的oligochitosan schiff碱(PiVcsbs)及其银纳米生物复合材料(NBCS)。首先,使用PIVCSBS作为协同还原剂和封端剂,制备银纳米颗粒(AGNP)的绿色原位方案,得到PIVCSBS / AG-IN NBC。相反,在前地协议中,最初制造AgNP,然后通过PiVCSB封端以制造PIVCSBS / AG-EX NBC。通过多样化的技术检查了新架构的结构,形态和物理化学特征。通过焊盘干固化方法将所得NBCS用作棉织物抗菌精加工添加剂。所获得的数据显示,与使用uV-VI,SEM显微照片和TEM技术证明的uV-VI,SEM显微照片和TEM技术的方法相比,原位方法产生的AgNP是球形,较小的尺寸,尺寸较小,稳定,均匀稳定,并均匀地不信任。此外,对大肠杆菌和金黄色葡萄球菌物种评估了棉花处理织物的抗菌性质,并获得了棉织物的非常强烈的杀菌活性。

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