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揭示多壁碳纳米管修饰的AgO/CuO/ZnO纳米复合材料的物理化学、光催化、抗菌和抗氧化性能。

Unveiling the physicochemical, photocatalytic, antibacterial and antioxidant properties of MWCNT-modified AgO/CuO/ZnO nanocomposites.

作者信息

Lone Amjad Latif, Rehman Sadiq Ur, Haq Sirajul, Shahzad Nadia, Al-Sadoon Mohammad Khalid, Shahzad Muhammad Imran, Razzokov Jamoliddin, Shujaat Shafia, Samad Abdus

机构信息

Department of Chemistry, University of Azad Jammu and Kashmir Muzaffarabad 13100 Pakistan

US-Pakistan Centre for Advanced Studies in Energy, National University of Science and Technology (NUST) 44000 Islamabad Pakistan.

出版信息

RSC Adv. 2025 Jan 16;15(2):1323-1334. doi: 10.1039/d4ra08466g. eCollection 2025 Jan 9.

Abstract

Water pollution, oxidative stress and the emergence of multidrug-resistant bacterial strains are significant global threats that require urgent attention to protect human health. Nanocomposites that combine multiple metal oxides with carbon-based materials have garnered significant attention due to their synergistic physicochemical properties and versatile applications in both environmental and biomedical fields. In this context, the present study was aimed at synthesizing a ternary metal-oxide nanocomposite consisting of silver oxide, copper oxide, and zinc oxide (ACZ-NC), along with a multi-walled carbon nanotubes modified ternary metal-oxide nanocomposite (MWCNTs@ACZ-NC). The properties of the synthesized nanomaterials were characterized using Fourier transform infrared (FT-IR) spectroscopy, field emission scanning electron microscopy (FESEM), X-ray diffraction (XRD), and energy dispersive X-ray (EDX) spectroscopy. The results obtained suggested the successful synthesis of both samples, as evidenced by the morphological changes observed in the SEM images, a transmittance band at 748.02 cm in the FT-IR spectrum, and a diffraction peak at 44.39° in the XRD pattern. The band gap energies were determined diffuse reflectance spectroscopy (DRS), with a redshift observed in the absorbance edge upon the incorporation of MWCNTs. The synthesized samples were tested as photocatalysts for the degradation of rhodamine 6G (Rh-6G), with the highest degradation efficiency (99.61%) achieved by MWCNTs@ACZ-NC. Additionally, the materials were evaluated for their biological activity as antibacterial and antioxidant agents. The MWCNTs@ACZ-NC exhibited the highest antioxidant potential with an IC value of 59.22 μg mL. However, the incorporation of MWCNTs resulted in a decrease in antibacterial activity, which may be attributed to the blocking of binding sites.

摘要

水污染、氧化应激和多重耐药细菌菌株的出现是重大的全球威胁,需要紧急关注以保护人类健康。将多种金属氧化物与碳基材料结合的纳米复合材料因其协同的物理化学性质以及在环境和生物医学领域的广泛应用而备受关注。在此背景下,本研究旨在合成一种由氧化银、氧化铜和氧化锌组成的三元金属氧化物纳米复合材料(ACZ-NC),以及一种多壁碳纳米管修饰的三元金属氧化物纳米复合材料(MWCNTs@ACZ-NC)。使用傅里叶变换红外(FT-IR)光谱、场发射扫描电子显微镜(FESEM)、X射线衍射(XRD)和能量色散X射线(EDX)光谱对合成的纳米材料的性质进行了表征。所获得的结果表明两个样品均成功合成,扫描电子显微镜图像中观察到的形态变化、FT-IR光谱中748.02 cm处的透射带以及XRD图谱中44.39°处的衍射峰都证明了这一点。通过漫反射光谱(DRS)测定带隙能量,在掺入多壁碳纳米管后,吸光度边缘出现红移。将合成的样品作为光催化剂用于罗丹明6G(Rh-6G)的降解测试,MWCNTs@ACZ-NC实现了最高的降解效率(99.61%)。此外,还评估了这些材料作为抗菌和抗氧化剂的生物活性。MWCNTs@ACZ-NC表现出最高的抗氧化潜力,IC值为59.22 μg mL。然而,多壁碳纳米管的掺入导致抗菌活性降低,这可能归因于结合位点的阻断。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c0f/11737373/e0bef20a742f/d4ra08466g-f1.jpg

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