首页> 外文期刊>Chemical engineering journal >Microwave-assisted synthesis of triple 2D g-C3N4/Bi2WO6/rGO composites for ibuprofen photodegradation: Kinetics, mechanism and toxicity evaluation of degradation products
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Microwave-assisted synthesis of triple 2D g-C3N4/Bi2WO6/rGO composites for ibuprofen photodegradation: Kinetics, mechanism and toxicity evaluation of degradation products

机译:微波辅助合成三重2D G-C3N4 / Bi2WO6 / RGO复合材料,用于布洛芬光降解:降解产物的动力学,机制和毒性评价

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In this study, the visible-light-driven Z-scheme g-C3N4/Bi2WO6/rGO heterojunctions with 2D/2D/2D configurations are prepared via a facile, rapid and low temperature microwave-assisted method. The physicochemical properties and morphologies of these heterostructured photocatalysts are characterized by various spectroscopies such as XRD, XPS, TEM/SEM, PL, FT-IR, UV-Visible spectroscopy and nitrogen adsorption measurements. The prepared g-C3N4/Bi2WO6/3 wt% rGO photocatalysts (incorporated with optimal 3 wt% of rGO) possess ca. 86 and 98% of ibuprofen (IBF) photodegradation under the visible light (lambda > 420 nm) and solar light irradiation, respectively. The formation of well crystallized structure, morphology (nanoplates structure of Bi2WO6), higher visible light absorption and specific surface area (25.4 m(2) g(-1)) are responsible for the superior performance of g-C3N4/Bi2WO6/3 wt% rGO. Moreover, the larger interfacial contact (identified by HRTEM) between triple 2D g-C3N4/Bi2WO6/rGO heterostructures can lead to surpassing interfacial charge carrier dynamics and reduce the combination of electron-hole pairs. IBF photodegradation intermediates and the corresponding reaction mechanisms are further investigated by using LC-MS/MS, indicating the superoxide radical (center dot O-2(-)) and hydroxyl radicals (center dot OH) are involved in the photodegradation of IBF and accordingly five intermediates are produced via three possible reaction pathways. The anti-hormonal effects of IBF and the photodegraded intermediate products are also evaluated by yeast-based bioassays. The results show that the intermediate products of photodegraded IBF have lower antagonistic effect on human hormone receptors than the pristine IBF.
机译:在该研究中,通过容易,快速和低温微波辅助方法制备具有2D / 2D / 2D配置的可见光驱动的Z-Scheme G-C3N4 / Bi2wo6 / Rgo杂交。这些异质结构光催化剂的物理化学性质和形态的特征在于XRD,XPS,TEM / SEM,PL,FT-IR,UV可见光谱和氮吸附测量等各种光谱。制备的G-C3N4 / BI2WO6 / 3wt%RGO光催化剂(掺入最佳3wt%的RGO)具有CA。在可见光(Lambda> 420nm)和太阳光照射下,86和98%的布洛芬(IBF)光降解。结晶结构良好的形成,形态(Bi2WO6的纳米板结构),较高的可见光吸收和比表面积(25.4m(2)G(-1))负责G-C3N4 / Bi2wo6 / 3 WT的优异性能%rgo。此外,Triple 2D G-C3N4 / Bi2wo6 / Rgo异质结构之间的较大界面接触(由HRTEM鉴定)可以导致界面电荷载体动力学并减少电子孔对的组合。通过使用LC-MS / MS进一步研究IBF光降解中间体和相应的反应机制,表明超氧化物自由基(中心点O-2())和羟基自由基(中央点OH)参与IBF的光降解,因此通过三种可能的反应途径产生五种中间体。 IBF和光降解中间产物的抗激素效应也通过基于酵母基的生物测定评估。结果表明,光降解的IBF的中间产物对人类激素受体具有比原始IBF的拮抗作用较低。

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