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用于光催化和抗菌活性的高效稳定碘化银-氧化镉纳米复合材料。

Highly efficient and stable AgI-CdO nanocomposites for photocatalytic and antibacterial activity.

作者信息

Warshagha Murad Z A, Muneer M, Althagafi Ismail I, Ahmed Saleh A

机构信息

Department of Chemistry, Aligarh Muslim University Aligarh-202002 India

Department of Chemistry, Faculty of Applied Sciences, Umm Al-Qura University Makkah 21955 Saudi Arabia

出版信息

RSC Adv. 2023 Feb 9;13(8):5013-5026. doi: 10.1039/d2ra07626h. eCollection 2023 Feb 6.

Abstract

For the last several decades, semiconducting materials and nanocomposites have received a lot of interest in generating highly efficient photocatalysts to destroy organic pollutants and eradicate bacteria. This study uses a simple deposition and precipitation approach at ambient temperature to create a unique and efficient AgI-CdO heterojunction. DRS, IR, SEM, EDS, XRD, EIS, and TEM were utilized to identify the material. SEM and TEM investigation depict the completely spherical, hexagonal forms and zigzag cubes for synthesized AgI-CdO. The EDX spectra reveal the presence of Ag, I, Cd, and O elements without impurity peaks showing that the prepared samples are highly pure. The activity of the synthesized materials was tested by degrading two different chromophoric dyes and a drug derivative (paracetamol) in an aqueous suspension under visible light. In addition, the activity of the most active catalyst was compared with Degussa P25, Fenton's reagent, and under sunlight for degradation of MB and RhB under similar conditions. Photolysis of paracetamol was also looked at using HPLC to identify intermediates formed in the photo-oxidation process. In addition, antibacterial activity was also investigated with the synthesized CdO-AgI nanocomposite against human pathogenic bacterial strains and compared with that of pure materials like AgI and standard ampicillin. The results showed excellent activity with the composite material, which could be due to the higher surface areas and the interactions between AgI and CdO nanoparticles. Quenching investigations revealed O˙ and holes are principal reactive species. A viable photocatalytic degradation mechanism for organic pollutant elimination over the AgI-CdO nanocomposite has been sketched out based on the obtained results.

摘要

在过去几十年中,半导体材料和纳米复合材料在制备高效光催化剂以破坏有机污染物和根除细菌方面引起了广泛关注。本研究采用简单的室温沉积和沉淀方法制备了一种独特且高效的AgI-CdO异质结。利用漫反射光谱(DRS)、红外光谱(IR)、扫描电子显微镜(SEM)、能谱分析(EDS)、X射线衍射(XRD)、电化学阻抗谱(EIS)和透射电子显微镜(TEM)对材料进行表征。SEM和TEM研究表明,合成的AgI-CdO呈现出完全球形、六边形和锯齿形立方体形态。EDX光谱显示存在Ag、I、Cd和O元素,无杂质峰,表明制备的样品纯度很高。通过在可见光下在水悬浮液中降解两种不同的发色染料和一种药物衍生物(对乙酰氨基酚)来测试合成材料的活性。此外,在相似条件下,将活性最高的催化剂与德固赛P25、芬顿试剂进行比较,并在阳光下对亚甲基蓝(MB)和罗丹明B(RhB)进行降解。还使用高效液相色谱法(HPLC)研究了对乙酰氨基酚的光解,以鉴定光氧化过程中形成的中间体。此外,还研究了合成的CdO-AgI纳米复合材料对人类致病细菌菌株的抗菌活性,并与AgI等纯材料和标准氨苄青霉素进行比较。结果表明,复合材料具有优异的活性,这可能归因于较高的表面积以及AgI和CdO纳米颗粒之间的相互作用。猝灭研究表明,超氧自由基(O˙)和空穴是主要的活性物种。基于所得结果,勾勒出了AgI-CdO纳米复合材料上有机污染物消除可行的光催化降解机理。

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