Ghodake Vijay S, Koyale Pramod A, More Vikramsinh B, Sonawane Kailas D, Delekar Sagar D
Nanoscience Research Laboratory, Department of Chemistry, Shivaji University Kolhapur 416 004 Maharashtra India
Department of Chemistry Yashwantrao Chavan Mahavidyalaya, Halkarni Kolhapur 416 552 Maharashtra India.
RSC Adv. 2025 Jan 27;15(4):2591-2601. doi: 10.1039/d4ra06892k. eCollection 2025 Jan 23.
This research investigates the microbial inactivation potential of ternary TiO-CuO-chitosan nanocomposites (TCC NCs) applied as surface coatings on cowhide leather. Initially, bare TiO nanoparticles (NPs) and binary TiO-CuO (TC) NCs, with varying CuO NPs content, were prepared using an sol-gel method. These binary TC NCs were then modified with chitosan at varying weight percentages (2%, 4%, 6%, and 8%). The resulting NCs were analyzed using various spectral tools. XRD analysis revealed the dominance of the anatase form of TiO in both binary and ternary NCs. UV-visible DRS measurements were used to study the optical properties of the NCs and compare these to those of individual components. Microscopic analysis indicated the formation of grain clusters with irregular shapes, with particle sizes ranging between 10 and 20 nm. FT-IR analysis studied the interconnectivity between TC and chitosan through different functional moieties, while Raman analysis confirmed the phases of the different constituents. BET analysis showed that TCC 8 NCs (having 8% OF chitosan in TC NCs) had a surface area 1.4 times greater than bare TiO NPs. Antibacterial and antifungal studies were conducted using standard protocols to test the prepared NCs against representative microbes. When coated on cowhide leather as microbicidal agents, the TCC 8 NCs-coated leather exhibited the highest microbicidal activity against , , , , , and in comparison to other ternary NCs, including TCC 2, TCC 4, and TCC 6, as well as binary NCs such as TC 10, TC 20, TC 30, and TC 50. This study showcases the effectiveness of these functional NCs for the surface disinfection of leather coatings.
本研究调查了用作牛皮革表面涂层的三元TiO-CuO-壳聚糖纳米复合材料(TCC NCs)的微生物灭活潜力。最初,使用溶胶-凝胶法制备了具有不同CuO NPs含量的裸露TiO纳米颗粒(NPs)和二元TiO-CuO(TC)NCs。然后用不同重量百分比(2%、4%、6%和8%)的壳聚糖对这些二元TC NCs进行改性。使用各种光谱工具对所得的NCs进行分析。XRD分析表明,二元和三元NCs中TiO的锐钛矿形式占主导地位。利用紫外-可见漫反射光谱(UV-visible DRS)测量研究了NCs的光学性质,并将其与各组分的光学性质进行比较。显微镜分析表明形成了形状不规则的晶粒簇,粒径在10到20纳米之间。傅里叶变换红外光谱(FT-IR)分析通过不同的功能基团研究了TC与壳聚糖之间的相互连接性,而拉曼分析则证实了不同成分的相。比表面积分析(BET)表明,TCC 8 NCs(在TC NCs中壳聚糖含量为8%)的表面积是裸露TiO NPs的1.4倍。使用标准方案进行抗菌和抗真菌研究,以测试制备的NCs对代表性微生物的抗菌性能。当作为杀菌剂涂覆在牛皮革上时,与其他三元NCs(包括TCC 2、TCC 4和TCC 6)以及二元NCs(如TC 10、TC 20、TC 30和TC 50)相比,涂覆有TCC 8 NCs的皮革对、、、、和表现出最高的杀菌活性。本研究展示了这些功能性NCs在皮革涂层表面消毒方面的有效性。