Immobilization of Ag-NPs onto cellulose-containing fabrics using O 2 -plasma

IF 1.5 4区 工程技术 Q2 MATERIALS SCIENCE, TEXTILES Journal of the Textile Institute Pub Date : 2023-10-10 DOI:10.1080/00405000.2023.2266133
Ghada Kadry
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Abstract

AbstractSilver nanocomposites (Ag-NPs/PVP) were synthesized through the reduction of Ag+ using Ethylene glycol (EG) and poly(N-vinylpyrrolidone) (PVP) as a protective agent in an alkaline medium. Characterization involved UV–Vis spectrum, and TEM image, confirming the well spread of the nanoparticles with a particle size of range 5–10 nm. Stability, assessed after three months, revealed a zeta potentialof −17 mV, identicating no agglomeration. . PVP role in decreasing the nanoparticle size was studied, attributed to the protective layer preventing aggregation. . The study enhanced the antibacterial activity of various cellulosic fabrics (cotton, linen, and viscose) by activating their surfaces through O2 plasma pretreatment at atmospheric pressure. Activation immobilized the fabric matrix by the extracting radicals fforming functional groups(C = O, –O–C = O, –COH, –COOH, and CH2–OH). Viscose demonstrated the highest effect. FTIR confirmed the formation of polar groups on the fabric surface. Activated cellulosic fabric was treated with Ag-NPs/PVP colloid solution and antibacterial activity was assessed against Staphylococcus aureus (S. aureus) andEscherichia coli (E. coli). Parameters such as: plasma exposure time, Ag-NPs/PVP concentration, and the pretreatment bath temperature were studied.SEM images and EDX spectra verified the presence of nitrogen and silver elements on the treated substrates surface .Keywords: Silver nanoparticlessurface activationO2-plasmaantibacterial activitycellulosic fiber Disclosure statementThe authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
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o2 -等离子体固定化Ag-NPs在含纤维素织物上的研究
摘要以乙二醇(EG)和聚n -乙烯基吡咯烷酮(PVP)为保护剂,在碱性介质中还原银离子,合成银纳米复合材料Ag- nps /PVP。通过紫外可见光谱和透射电镜图像进行表征,证实纳米颗粒的扩散良好,粒径范围为5-10 nm。三个月后的稳定性评估显示,zeta电位为- 17 mV,未发现团聚。研究了PVP对减小纳米颗粒粒径的作用,认为PVP的保护层阻止了纳米颗粒的聚集。该研究通过在常压下进行O2等离子体预处理,激活各种纤维素织物(棉、麻和粘胶)的表面,从而增强了其抗菌活性。活化通过提取自由基形成官能团(C = O, -O-C = O, -COH, -COOH和CH2-OH)来固定织物基体。粘胶的效果最好。FTIR证实了织物表面极性基团的形成。用Ag-NPs/PVP胶体溶液对活化后的纤维素织物进行处理,并对金黄色葡萄球菌(S. aureus)和大肠杆菌(E. coli)进行抑菌活性评价。研究了血浆暴露时间、Ag-NPs/PVP浓度、预处理浴温度等参数。SEM图像和EDX光谱证实了氮和银元素在处理过的底物表面的存在。关键词:纳米银粒子表面活化o2等离子体抗菌活性纤维素纤维披露声明作者声明他们没有已知的竞争经济利益或个人关系可能会影响本文报道的工作。
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来源期刊
Journal of the Textile Institute
Journal of the Textile Institute 工程技术-材料科学:纺织
CiteScore
4.20
自引率
5.90%
发文量
149
审稿时长
1.0 months
期刊介绍: The Journal of The Textile Institute welcomes papers concerning research and innovation, reflecting the professional interests of the Textile Institute in science, engineering, economics, management and design related to the textile industry and the use of fibres in consumer and engineering applications. Papers may encompass anything in the range of textile activities, from fibre production through textile processes and machines, to the design, marketing and use of products. Papers may also report fundamental theoretical or experimental investigations, including materials science topics in nanotechnology and smart materials, practical or commercial industrial studies and may relate to technical, economic, aesthetic, social or historical aspects of textiles and the textile industry. All published research articles in The Journal of The Textile Institute have undergone rigorous peer review, based on initial editor screening and anonymized refereeing by two expert referees.
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