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CuO/金属有机框架杂化纳米复合材料对环丙沙星的增强可见光响应光催化降解

Enhanced Visible-Light-Responsive Photocatalytic Degradation of Ciprofloxacin by the CuO/Metal-Organic Framework Hybrid Nanocomposite.

作者信息

Tsai Cheng-Kuo, Huang Ching-Hsuan, Horng Jao-Jia, Ong Hui Lin, Doong Ruey-An

机构信息

Department of Safety Health and Environmental Engineering, National Yunlin University of Science and Technology, Douliou 64002, Taiwan.

Emergency Response Information Center, National Yunlin University of Science and Technology, Douliou 64002, Taiwan.

出版信息

Nanomaterials (Basel). 2023 Jan 9;13(2):282. doi: 10.3390/nano13020282.

Abstract

Ciprofloxacin (CIP) is a commonly used antibiotic, however, once in the environment, it is highly toxic with a poor biodegradability. Given these attributes, an effective strategy for the removal of CIP is urgently needed for the protection of water resources. Herein, a novel copper metal-organic framework (CuxO/MOF) multifunctional material has been produced, in this work, by the calcination of Cu-MOF urea at 300 °C, in the presence of a 5% H2 atmosphere. The morphological, structural, and thermal properties of the prepared CuxO/MOF were determined through various techniques, and its photocatalytic behavior was investigated for the degradation of CIP under visible-light irradiation. The prepared CuxO/MOF bifunctional material is presented as a graphitic carbon-layered structure with a particle size of 9.2 ± 2.1 nm. The existence of CuO-Cu2O-C, which was found on the CuxO/MOF surface, enhanced the adsorption efficiency and increased the photosensitivity of CuxO/MOF, towards the degradation of CIP in aqueous solutions. The tailored CuxO/MOF, not only shows an excellent CIP degradation efficiency of up to 92% with a constant kinetic rate (kobs) of 0.048 min−1 under visible light, but it can also retain the stable photodegradation efficiency of >85%, for at least six cycles. In addition, CuxO/MOF has an excellent adsorption capacity at pH 6.0 of the maximum Langmuir adsorption capacity of 34.5 mg g−1 for CIP. The results obtained in this study demonstrate that CuxO/MOF is a reliable integrated material and serves as an adsorbent and photocatalyst, which can open a new pathway for the preparation of visible-light-responsive photocatalysts, for the removal of antibiotics and other emerging pollutants.

摘要

环丙沙星(CIP)是一种常用抗生素,然而,一旦进入环境,它具有高毒性且生物降解性差。鉴于这些特性,迫切需要一种有效的去除CIP的策略来保护水资源。在此,通过在5%氢气气氛下于300℃煅烧Cu-MOF尿素,制备了一种新型铜基金属有机框架(CuxO/MOF)多功能材料。通过各种技术确定了所制备的CuxO/MOF的形态、结构和热性能,并研究了其在可见光照射下对CIP降解的光催化行为。所制备的CuxO/MOF双功能材料呈现出粒径为9.2±2.1nm的石墨碳层状结构。在CuxO/MOF表面发现的CuO-Cu2O-C的存在提高了吸附效率,并增加了CuxO/MOF对水溶液中CIP降解的光敏性。定制的CuxO/MOF不仅在可见光下表现出高达92%的优异CIP降解效率,恒定动力学速率(kobs)为0.048 min−1,而且在至少六个循环中还能保持>85%的稳定光降解效率。此外,CuxO/MOF在pH 6.0时对CIP具有优异的吸附容量,最大朗缪尔吸附容量为34.5 mg g−1。本研究获得的结果表明,CuxO/MOF是一种可靠的集成材料,可作为吸附剂和光催化剂,可为制备可见光响应光催化剂以去除抗生素和其他新兴污染物开辟新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b183/9864703/577617c56ab8/nanomaterials-13-00282-sch001.jpg

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