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用于高效光催化和抗癌活性的直接Z型AgBr/β-MnO光催化剂

Direct Z-Scheme AgBr/β-MnO Photocatalysts for Highly Efficient Photocatalytic and Anticancer Activity.

作者信息

Warshagha Murad Z A, Muneer Mohammad

机构信息

Department of Chemistry, Aligarh Muslim University, Aligarh 202002, India.

出版信息

ACS Omega. 2022 Aug 17;7(34):30171-30183. doi: 10.1021/acsomega.2c03260. eCollection 2022 Aug 30.

Abstract

The preparation of visible light-responsive efficient photocatalysts for removing organic contaminants from water and killing cancer cells has gotten a lot of attention due to the growing global concern. In this study, we have successfully fabricated an efficient AgBr/β-MnO nanocomposite via a facile deposition and precipitation method at room temperature. Techniques such as XRD, SEM-EDS, TEM, DRS, PL, EIS, ESR, and FTIR were used to determine the crystalline, structural, morphological, optical, and other properties. The SEM and TEM analyses reveal that AgBr NPs are decorated on the surface of β-MnO, which possesses rods with a sphere-like structure for AgBr/β-MnO. The EDX analysis confirms the existence of Mn, O, Ag, and Br elements in the nanocomposites without an extra peak, indicating that the synthesized samples are highly pure. The high photocatalytic performance of AgBr/β-MnO could be attributed to the formation of Ag NPs and the construction of the Z-scheme heterojunction between AgBr and β-MnO. This may enhance fast light absorption and efficient photogenerated (e-/h+) pairs, as indicated by EIS and photoluminescence measurements, which in turn achieved high activity for the decomposition of MB (97%, in 12 min), RhB (98.9%, in 9 min), and paracetamol (80%, in 180 min), respectively. The kinetic model study proposed that the first-order model showed a better fit than the zero- and second-order for the photocatalytic decolorization of RhB dye. XRD analysis of 0.2 AgBr/β-MnO before and after recycling confirms the high stability of the catalyst. HPLC results showed that no detectable by-products are produced through the decomposition of paracetamol. Interestingly, 0.2 AgBr/β-MnO nanocomposites showed visible light-induced anticancer activity against A549 cancer cell lines. The mechanistic degradation pathway has been proposed using the involvement of active species like superoxide radicals (O) and photoinduced holes (h). The proposed work focuses on synthesizing effective photocatalysts in a less hazardous environment with superior biological activity.

摘要

由于全球关注度不断提高,制备用于去除水中有机污染物和杀死癌细胞的可见光响应高效光催化剂受到了广泛关注。在本研究中,我们通过室温下简便的沉积和沉淀法成功制备了一种高效的AgBr/β-MnO纳米复合材料。使用XRD、SEM-EDS、TEM、DRS、PL、EIS、ESR和FTIR等技术来确定其晶体、结构、形态、光学和其他性质。SEM和TEM分析表明,AgBr纳米颗粒装饰在β-MnO的表面,对于AgBr/β-MnO而言,β-MnO具有棒状且带有球状结构。EDX分析证实了纳米复合材料中存在Mn、O、Ag和Br元素,没有额外的峰,表明合成的样品纯度很高。AgBr/β-MnO的高光催化性能可归因于Ag纳米颗粒的形成以及AgBr和β-MnO之间Z型异质结的构建。如EIS和光致发光测量所示,这可能增强快速光吸收和高效的光生(电子/空穴)对,进而分别实现了对亚甲基蓝(12分钟内97%)、罗丹明B(9分钟内98.9%)和对乙酰氨基酚(180分钟内80%)的高分解活性。动力学模型研究表明,对于罗丹明B染料的光催化脱色,一级模型比零级和二级模型拟合得更好。对0.2 AgBr/β-MnO回收前后的XRD分析证实了催化剂的高稳定性。HPLC结果表明,对乙酰氨基酚分解过程中未产生可检测到的副产物。有趣的是,0.2 AgBr/β-MnO纳米复合材料对A549癌细胞系表现出可见光诱导的抗癌活性。利用超氧自由基(O)和光生空穴(h)等活性物种提出了降解机理途径。所提出的工作重点是在危害较小的环境中合成具有优异生物活性的有效光催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/665c/9434753/3aa4cbaf9337/ao2c03260_0002.jpg

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