Facile development of copper ferrite nanospheres for UV light-driven photocatalytic degradation of cloxacillin sodium
文献信息
Faheem Haider, Adnan Ashraf, Saeed Ahmed, Khalid Mujasam Batoo, Waseeq Ahmad Siddiqui, Muhammad Imran, Muhammad Asam Raza, Muhammad Pervaiz, Sajjad Hussain
Copper ferrite nanoparticles (CuFe2O4 NPs) have multiple applications in various fields. Herein, a co-precipitation method under mild basic conditions has been used to develop CuFe2O4 NPs. The obtained precipitates were annealed at 500 °C for 4 hours to form copper ferrite. The synthesis of CuFe2O4 NPs was initially confirmed by UV-visible spectroscopy. The presence of specific functional groups like Fe–O was found at 593 cm−1 using Fourier transform infrared spectroscopy. The tetrahedral crystal structure for the CuFe2O4 NPs has been confirmed by X-ray diffraction analysis. The nanosphere-like morphology was confirmed by field emission scanning electron microscopy and the average calculated size of the nanoparticles is ∼45 nm and the pHPZC for the CuFe2O4 NPs is 6.67. The synthesized CuFe2O4 NPs were used for UV light-mediated degradation of cloxacillin sodium (CLX). The degradation of CLX was optimized under different sets of conditions including times of exposure of the drug with the catalyst under UV light, pH values, concentrations, and dosages of the catalyst. The total organic carbon (TOC) confirms 39% degradation of the drug, which is converted into inorganic carbon (IC) and in line with other experimental results. This study provides new insight into the use of copper ferrite to overcome pharmaceutical pollution of water bodies.
相关文献
Drug delivery systems for enhanced tumour treatment by eliminating intra-tumoral bacteria
Yige Ma, Jinxin Ye, Guofeng Li, Xiaoxu Kang, Wensheng Xie, Xing Wang
DOI: 10.1039/D3TB02362A
Oxalatocuprate(ii) hexaammincobalt(iii) as a precursor of metastable solid solutions in the Co–Cu system
Varvara Lagunova, Evgeny Filatov, Pavel Plyusnin, Natalia Kuratieva, Sergey Korenev
DOI: 10.1039/D3NJ05311C
Self-supported 3D coral-like copper/poly diphenylamine on nickel foam: multifunctional exploration of overall electrochemical water splitting, alcohol oxidation reaction and supercapacitor applications
Asha Raveendran, Mijun Chandran, Soo Chool Lee, Masoom Raza Siddiqui, Saikh Mohammad Wabaidur
DOI: 10.1039/D3NJ05182J
Near-infrared light-actuated on-demand botanicals release and hyperthermia by an antibiotic-free polysaccharide-based hydrogel dressing for the synergistic treatment of wound infections
Shuwen Sun, Wenbo Lin, Lu Yang, Chenhao Zhang
DOI: 10.1039/D3TB02714G
Potassium energy storage behavior of nickel–zinc co-doped Prussian blue analogs formed by a chelating-agent-assisted route and its application in a K+-proton hybrid-ion aqueous alkaline battery
Ruiqing Hua, Caiyun Xu, Dian Lin, Deyu Qu, Xi Li, Ruiming Zhang, Zhizhong Xie
DOI: 10.1039/D3NJ04095J
A potent multifunctional ZIF-8 nanoplatform developed for colorectal cancer therapy by triple-delivery of chemo/radio/targeted therapy agents
Sonia Iranpour, Mahdieh Dayyani
DOI: 10.1039/D3TB02571C
Ostwald ripening mechanism-derived MnOOH induces lattice oxygen escape for efficient aqueous MnO2–Zn batteries
Chenchen Qin, Chi Chen, Chuankun Zhang, Xin Chen, Yi Gan, Jingying Li, Jia Yao, Xin Liu, Junyan Cheng, Dan Sun
DOI: 10.1039/D3TA05364D
Difunctionalization of alkenes proceeding with radical 1,2-alkynyl migration in batch and continuous-flow modes
Ziren Mao, Yiliang Zhou, Jingming Zhang, Chengkou Liu, Chang-Sheng Wang, Xiaobing Yang, Hong Qin, Zheng Fang
DOI: 10.1039/D3NJ05081E
Red light-triggered release of ROS and carbon monoxide for combinational antibacterial application
Mengdan Zhang, Jian Cheng, Zhiqiang Shen, Kewu He, Bin Zheng
DOI: 10.1039/D3TB01829F
Ultra-high dispersion of Ni-based OER catalysts on graphene 3D networks enhances the in situ Fe3+ catalytic activation
María González-Ingelmo, Miriam López García, Freddy E. Oropeza, Patricia Álvarez, Clara Blanco, Ricardo Santamaría, Victoria G. Rocha
DOI: 10.1039/D3TA04481E
您可能还喜欢
4-((4-甲基哌嗪-1-基)甲基)苯硼酸(CAS号:763120-62-3)的市场或研究趋势如何?
随着有机硼化学的发展,该化合物在催化、药物合成、材料科学等领域展现出潜在的应用价值。近年来,其在药物前体合成中的应用越来越受到关注。市场趋势显示,随着科研投入的...
如何储存2,4,5-三甲基-1-硝基苯(CAS号:610-91-3)?
2,4,5-三甲基-1-硝基苯应储存在阴凉、干燥且通风良好的地方,避免阳光直射。储存在密封的金属容器中,远离火源和热源。储存温度应控制在25°C以下,湿度不宜过...
处理2,5-二碘噻吩(CAS号:625-88-7)时应注意哪些实验室安全事项?
在处理2,5-二碘噻吩时,应穿戴适当的个人防护装备(PPE),包括实验室外套、手套和防护眼镜。在通风橱中进行操作以避免吸入蒸气。如果发生泄漏,应立即疏散人员并使...
在合成中是否有6-bromo-3-chloro-1H-indole(CAS号:57916-08-2)的替代品?
在合成6-溴-3-氯-1H-吲哚(CAS号:57916-08-2)时,可以考虑使用一些类似的化合物作为替代品,如6-氯-3-氯-1H-吲哚或3-氯-1H-吲哚,...
在合成中是否有(R)-(-)-1-(1-萘基)乙基异氰酸酯(CAS号:42340-98-7)的替代品?
可以考虑使用类似结构的化合物,如1-[(1R)-1-(2-氨基乙基)萘-1-基]乙基异氰酸酯作为替代品。此外,还可以寻找其他类型的异氰酸酯衍生物,如苯基异氰酸酯...
3-氨基苯甲酰苯胺(CAS号:14315-16-3)适用哪些法规指南?
3-氨基苯甲酰苯胺适用于多项法规指南,包括但不限于GHS(全球化学品统一分类和标签制度)分类为皮肤腐蚀/刺激类别2,以及潜在的皮肤过敏性类别1。在欧盟地区,它受...
β-环柠檬醛-D5(CAS号:26309-95-5)通常如何合成?
β-环柠檬醛-D5可通过不对称合成方法获得。常见的合成路线包括以环己酮为原料,经过选择性氧化、还原、保护基引入等步骤,最终得到目标化合物。该合成过程中通常使用多...
如何处理含有BIO-1211(CAS号:187735-94-0)的废料?
对于含有BIO-1211(CAS号:187735-94-0)的废料,首先应进行分类收集,确保符合环保要求。然后,可以考虑通过焚烧或其他专业处理方法进行处置。在处...
如何处理含有4-氯-2-氟-3-甲基苯酚(CAS号:1351668-24-0)的废料?
含有该化合物的废液应收集至专用容器中,避免与其他化学品混合。可采用焚烧或送交专业废弃物处理公司处理。处理过程中需遵守当地环保法规,确保不产生二次污染。处理前应进...














![2-Methyl-2-propanyl [1-(3-nitro-2-pyridinyl)-4-piperidinyl]carbamate structure 2-Methyl-2-propanyl [1-(3-nitro-2-pyridinyl)-4-piperidinyl]carbamate structure](https://cnstatic.chemtradehub.com/structs/833/833452-36-1-7af5.webp)
