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助表面活性剂对CuO及杂化CuO/Ag颗粒的性质和杀菌活性的影响

Effect of Co-Surfactants on Properties and Bactericidal Activity of CuO and Hybrid CuO/Ag Particles.

作者信息

Xuan Thang Dam, Thuy Chinh Nguyen, Thi Binh Minh Nguyen, Hoang Nghia Trinh, Hoang Thai

机构信息

Department of Chemical Technology, Hanoi University of Industry, 298, Cau Dien, Minh Khai, Bac Tu Liem, Hanoi, 100000, Vietnam.

Institute for Tropical Technology, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay, Hanoi, 100000, Vietnam.

出版信息

ChemistryOpen. 2024 Aug;13(8):e202300274. doi: 10.1002/open.202300274. Epub 2024 Mar 1.

Abstract

Nanomaterials based on metal oxides, especially CuO, have received much attention in recent years due to the many unique properties of the surface plasmon resonance they provide. The report presented the co-precipitation method, a simple preparation method to produce CuO oxide particles. In addition, to improve the unique antibacterial properties of CuO, a proposed method is to attach Ag nanoparticles to the surface of CuO particles. The CuO and CuO-Ag particles were synthesized based on redox reactions using ascorbic acid (LAA) as a reducing agent. Moreover, in this experiment, two surfactants, polyethylene glycol 6000 (PEG 6000) and sodium dodecyl sulfate (SDS), were added during the manufacturing process to create particle samples and particle combinations with better properties than the original sample. Changes in the characteristics and properties of particle samples are determined by many different physical and chemical methods such as ultraviolet-visible spectroscopy (UV-Vis), infrared spectroscopy (IR), noise X-ray radiation (XRD), scanning electron microscope (SEM), dynamic light scattering (DLS), energy dispersive X-ray spectroscopy (EDS), and transmission electron microscopy (TEM). Finally, the activity against bacteria, including E. coli and S. aureus, was also tested using the agar well diffusion method to determine the zone of inhibition. The results improved the particle size value, which decreased by half to 200 nm when two additional surfactants, PEG and SDS, were added. In addition, the antibacterial ability has also been shown to increase significantly when the diameter of the bacterial inhibition zone increased significantly, reaching values of 20 mm (CuO/Ag/SDS) and 32 mm (CuO/Ag/PEG) for the E. coli bacterial strain. The initial test sample was only about 14 mm in size. The S. aureus bacterial strain also had a similar improvement trend after adding Ag to the CuO surface with the appearance of two surfactants, SDS and PEG. The inhibition zone diameter values reached the optimal value at 36 mm in the CuO/Ag/PEG particle combination sample compared to only the initial 26 mm in the CuO particle sample. Finally, the particle samples are added to the acrylic emulsion paint film to evaluate the changes. Positive results were obtained, such as improvement in adhesion (1.22 MPa), relative hardness (240/425), and sand drop resistance (100 L/mil) in the CuO/Ag/PEG particle combination sample, which showed the correctness and accuracy of the research.

摘要

近年来,基于金属氧化物的纳米材料,尤其是氧化铜(CuO),因其所具有的许多独特的表面等离子体共振特性而备受关注。该报告介绍了共沉淀法,这是一种制备氧化铜颗粒的简单方法。此外,为了增强氧化铜独特的抗菌性能,一种建议的方法是将银纳米颗粒附着在氧化铜颗粒表面。基于氧化还原反应,以抗坏血酸(LAA)作为还原剂合成了氧化铜和氧化铜-银颗粒。此外,在本实验中,在制造过程中添加了两种表面活性剂,聚乙二醇6000(PEG 6000)和十二烷基硫酸钠(SDS),以制备出性能优于原始样品的颗粒样品和颗粒组合。通过许多不同的物理和化学方法来确定颗粒样品的特性和性能变化,如紫外可见光谱(UV-Vis)、红外光谱(IR)、噪声X射线辐射(XRD)、扫描电子显微镜(SEM)、动态光散射(DLS)、能量色散X射线光谱(EDS)和透射电子显微镜(TEM)。最后,还使用琼脂扩散法测试了对包括大肠杆菌和金黄色葡萄球菌在内的细菌的活性,以确定抑菌圈。结果显示,当添加另外两种表面活性剂PEG和SDS时,粒径值有所改善,粒径减小了一半,降至200 nm。此外,当大肠杆菌菌株的抑菌圈直径显著增加,分别达到20 mm(CuO/Ag/SDS)和32 mm(CuO/Ag/PEG)时,抗菌能力也显著增强。初始测试样品的抑菌圈直径仅约为14 mm。在用两种表面活性剂SDS和PEG在氧化铜表面添加银后,金黄色葡萄球菌菌株也有类似的改善趋势。与氧化铜颗粒样品最初仅26 mm的抑菌圈直径相比,在氧化铜/银/PEG颗粒组合样品中,抑菌圈直径值达到了最佳值36 mm。最后,将颗粒样品添加到丙烯酸乳胶漆膜中以评估变化情况。在氧化铜/银/PEG颗粒组合样品中获得了积极的结果,如附着力(1.22 MPa)、相对硬度(240/425)和耐砂磨性(100 L/密耳)得到改善,这表明了该研究的正确性和准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f306/11319235/84690e26b5f0/OPEN-13-e202300274-g012.jpg

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