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整合镍基金属有机框架/石墨相氮化碳/壳聚糖衍生的S型光催化剂用于四环素的高效可见光光降解及抗菌活性

Integrating Ni-MOF/g-CN/chitosan derived S-scheme photocatalyst for efficient visible light photodegradation of tetracycline and antibacterial activities.

作者信息

Wani Musaib Y, Bashir Nahida, Ahmad Sajad, Rehman Murtaza, Shah Shakeel A, Rehman Beig Sajad Ur

机构信息

Department of Chemistry, National Institute of Technology, Srinagar, Hazratbal, 190006, Jammu and Kashmir, India.

Department of Chemistry, National Institute of Technology, Srinagar, Hazratbal, 190006, Jammu and Kashmir, India.

出版信息

Environ Res. 2025 Feb 15;267:120659. doi: 10.1016/j.envres.2024.120659. Epub 2024 Dec 17.

Abstract

Nickel MOF (Ni-MOF) nanoparticles were successfully anchored onto a polymeric graphitic carbon nitride (g-CN) and Chitosan nanostructure (NS) using an eco-friendly and straightforward synthesis method. These newly fabricated photocatalysts were thoroughly characterized with standard techniques, revealing that the nanoscale Ni-MOF particles were uniformly deposited on the sheet-like g-CN matrix. This configuration demonstrated excellent antimicrobial properties and outstanding photodegradation of tetracycline hydrochloride under visible light exposure. The MOF@GC photocatalyst exhibited robust bactericidal activity against pathogens like Escherichia coli, Staphylococcus aureus, Klebsiella pneumoniae, and Pseudomonas aeruginosa. Additionally, it achieved superior visible-light-driven degradation of tetracycline in a significantly shorter time compared to other studies, with approximately 96% of the tetracycline being degraded in just 70 min under visible light. These findings suggest that the effective deposition of Ni-MOF onto the g-CN structure reduces the recombination rate of photogenerated electrons and holes, thereby enhancing the photocatalytic efficiency of pure g-CN under visible light. The proposed catalytic mechanism, informed by valence band (VB) and conduction band (CB) data from cyclic voltammetry measurements, further supports this conclusion. The MOF@GC photocatalyst is a promising nanostructured material for antimicrobial applications and visible-light-driven photocatalysis.

摘要

采用一种环保且简便的合成方法,成功地将镍金属有机框架(Ni-MOF)纳米颗粒锚定在聚合物石墨相氮化碳(g-CN)和壳聚糖纳米结构(NS)上。这些新制备的光催化剂采用标准技术进行了全面表征,结果表明纳米级Ni-MOF颗粒均匀地沉积在片状g-CN基质上。这种结构在可见光照射下表现出优异的抗菌性能和出色的盐酸四环素光降解性能。MOF@GC光催化剂对大肠杆菌、金黄色葡萄球菌、肺炎克雷伯菌和铜绿假单胞菌等病原体具有强大的杀菌活性。此外,与其他研究相比,它在显著更短的时间内实现了可见光驱动的四环素高效降解,在可见光下仅70分钟就有大约96%的四环素被降解。这些发现表明,Ni-MOF在g-CN结构上的有效沉积降低了光生电子和空穴的复合率,从而提高了纯g-CN在可见光下的光催化效率。循环伏安法测量得到的价带(VB)和导带(CB)数据所揭示的催化机制进一步支持了这一结论。MOF@GC光催化剂是一种用于抗菌应用和可见光驱动光催化的有前途的纳米结构材料。

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