水性壳聚糖/氧化石墨烯纳米复合材料作为功能性皮革的抗菌涂层,具有增强的机械和热性能†

IF 3.9 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
RSC Advances Pub Date : 2025-04-17 DOI:10.1039/D5RA00225G
Khandaker Tanzim Rahman, Md. Nur-E. Alam and M. Nuruzzaman Khan
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引用次数: 0

摘要

工业界和最终用户认为,为医用纺织品和皮革制品开发环保、有效的抗菌外表面非常重要。在这里,带正电荷的壳聚糖(CS)和氧化铜纳米颗粒装饰的带负电荷的氧化石墨烯(CuO-GO)被逐层组合,在皮革表面形成了一种创新的纳米复合材料(CS/CuO-GO)涂层。GO 由石墨粉制备而成。有报告称,用芦荟叶提取物合成 CuO 纳米粒子对环境友好,并将其用于制备 CuO-GO 纳米复合材料。通过傅立叶变换红外光谱、X 射线衍射、紫外-可见光谱、TEM 和 DLS 分析对制备的材料进行了测试。采用 "杀灭-释放 "方法,不同数量的 CS/CuO-GO 涂层皮革对大肠杆菌(E. coli)和枯草杆菌(B. subtilis)表现出高效的抗菌活性。这主要归功于壳聚糖层的接触杀菌、Cu2+ 离子的释放和阴离子 GO 层的细菌排斥特性之间的协同作用。FE-SEM 分析证实了皮革表面存在 CuO-GO 层,并对宏观性能产生了影响。XPS 分析证实了皮革表面涂层材料的化学状态。涂覆 CS/CuO-GO 纳米复合材料后,拉伸强度、撕裂强度和缝合撕裂强度都有所提高。涂覆不同重量百分比的 CS/CuO-GO 纳米复合材料后,涂覆皮革的 WVP 值保持在一定范围内。通过干摩擦牢度和湿摩擦牢度测试,对皮革表面纳米复合涂层的耐久性进行了全面检测。结果清楚地表明,强涂层大大提高了皮革对机械磨损的抗菌效果。利用水接触角测量法评估了 CS/CuO-GO 纳米复合涂层对皮革表面亲水性的影响。水性壳聚糖基 CuO-GO 纳米复合材料是一种良好的环保型皮革涂饰系统。它可将其应用扩展到运动和医用纺织品,以增强抗菌效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Water-borne chitosan/CuO-GO nanocomposite as an antibacterial coating for functional leather with enhanced mechanical and thermal properties†

The advancement of eco-friendly and effective antibacterial outer surfaces for medical textiles and leather products is considered important by industries and end users. Herein, positively charged chitosan (CS) and copper oxide nanoparticle-decorated negatively charged graphene oxide (CuO-GO) were assembled layer-by-layer to create an innovative nanocomposite (CS/CuO-GO) coating onto the leather surface. GO was prepared from graphite powder. Eco-friendly synthesis of CuO nanoparticles with Aloe vera leaf extract was reported and utilized to prepare the CuO-GO nanocomposite. The as-prepared materials were tested through FTIR, XRD, UV-vis spectroscopy, TEM, and DLS analyses. Different amounts of CS/CuO-GO coated leathers showed efficient antibacterial activities against Escherichia coli (E. coli) and Bacillus subtilis (B. subtilis) using a “kill-release” approach. This was largely attributed to the cooperative interaction between the contact-killing of the chitosan layer, the discharge of Cu2+ ions, and the bacterial-repelling properties of the anionic GO layer. The FE-SEM analysis confirms the existence of a CuO-GO layer on the leather surface with an effect on the macroscopic level performances. The XPS analysis confirms the chemical state of the coated materials on the leather surface. Tensile, tear, and stitch tear strength increased after coating with the CS/CuO-GO nanocomposite. The WVP of the coated leather remains within the range after coating with different wt% of the CS/CuO-GO nanocomposite. The durability of the nanocomposite coating on leather surfaces was thoroughly examined through dry and wet rub fastness tests. Results clearly showed that the strong coating greatly enhanced the antibacterial effectiveness of leather against mechanical wear. The impacts of CS/CuO-GO nanocomposite coating on the leather surface hydrophilicity were evaluated using water contact angle measurements. Water-borne chitosan-based CuO-GO nanocomposite showed a good eco-friendly leather finishing system. It could extend their applications to sports and medical textiles to impart antibacterial effects.

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来源期刊
RSC Advances
RSC Advances chemical sciences-
CiteScore
7.50
自引率
2.60%
发文量
3116
审稿时长
1.6 months
期刊介绍: An international, peer-reviewed journal covering all of the chemical sciences, including multidisciplinary and emerging areas. RSC Advances is a gold open access journal allowing researchers free access to research articles, and offering an affordable open access publishing option for authors around the world.
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