Abid Hafiza Kainat, Siddique Abu Bakar, Abbas Azhar, Shaheen Muhammad Ashraf, Ali Akbar, Fatima Mashal, Shami Ashwag, Alrayyani Maymounah A, Al-Joufi Fakhria A, Assiri Mohammed A
Institute of Chemistry, University of Sargodha Sargodha 40100 Pakistan
Department of Chemistry, Government Ambala Muslim College Sargodha 40100 Pakistan.
Nanoscale Adv. 2025 Aug 4. doi: 10.1039/d5na00583c.
The continuous increase in population and industrial activity in several areas, including textiles, leather, plastics, cosmetics, and food processing, produces harmful organic pollutants such as azo dyes, which are harmful to aquatic life and cause water pollution. The remediation of these dyes using photo-responsive metallic nanoparticles (NPs) has become a viable technique for the purification of water. This study synthesized ZnO NPs, CuO NPs, and ZnO/CuO nanocomposites using leaf extract. The NPs and NCs were characterized by UV-Vis spectroscopy, FTIR, SEM, EDX, ZP, and PXRD. All the nanomaterials showed energy bandgap in the UV and visible light region (2.15-3.00 eV) evidenced by Tauc's plots, successful capping of NPs by organic moieties, identified by FTIR, and crystallite size in the range of 13.72-16.82 nm, calculated by the PXRD data utilizing the Debye-Scherrer equation and quasi spherical shape analyzed by SEM. Compared to ZnO NPs and CuO NPs, ZnO/CuO NCs showed significantly increased photocatalytic performance of 96% for MB dye degradation and 93% for MO dye degradation in 100 min with rate constant () values of about 3.35 × 10 min and 2.65 × 10 min, respectively. The effect of catalyst dose, pH, water composition, and radical scavengers was also evaluated to optimize the conditions and propose a degradation mechanism and p-n heterojunction with Fermi level shifting for improved exciton generation. The biomedical importance of the ZnO/CuO NCs was assessed by the disc diffusion assay to check the antibacterial potential, and DPPH assay, TFC assay and TPC assay for antioxidant potential. All these studies, along with the reusability of the catalyst, demonstrated the appreciable catalytic efficacy of ZnO/CuO NCs for the water purification of industrial effluents.
包括纺织品、皮革、塑料、化妆品和食品加工在内的多个领域,人口和工业活动持续增加,产生了有害有机污染物,如偶氮染料,这些污染物对水生生物有害并导致水污染。使用光响应金属纳米颗粒(NPs)修复这些染料已成为一种可行的水净化技术。本研究使用叶提取物合成了ZnO NPs、CuO NPs和ZnO/CuO纳米复合材料。通过紫外可见光谱、傅里叶变换红外光谱、扫描电子显微镜、能谱分析、ζ电位和粉末X射线衍射对NPs和NCs进行了表征。所有纳米材料在紫外和可见光区域均显示出能带隙(2.15 - 3.00 eV),这由Tauc图证明;通过傅里叶变换红外光谱确定有机部分成功包覆了NPs;利用Debye-Scherrer方程根据粉末X射线衍射数据计算出微晶尺寸在13.72 - 16.82 nm范围内,通过扫描电子显微镜分析为准球形。与ZnO NPs和CuO NPs相比,ZnO/CuO NCs在100分钟内对亚甲基蓝染料降解表现出显著提高的光催化性能,降解率为96%,对甲基橙染料降解率为93%,速率常数()值分别约为3.35×10⁻² min⁻¹和2.65×10⁻² min⁻¹。还评估了催化剂剂量(用量)、pH值、水成分和自由基清除剂的影响,以优化条件并提出降解机制以及具有费米能级移动的p - n异质结以改善激子产生。通过纸片扩散法评估ZnO/CuO NCs的生物医学重要性以检查抗菌潜力,并通过二苯基苦味酰基自由基(DPPH)测定、总黄酮含量(TFC)测定和总酚含量(TPC)测定评估抗氧化潜力。所有这些研究以及催化剂的可重复使用性都证明了ZnO/CuO NCs对工业废水水净化具有可观的催化效果。