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MIL-88A负载于MIL-88B上的异质结:一种从绿色合成到在四环素和染料去除中双重应用(吸附和光催化)的有前景的环保型异质结。

Heterogeneous MIL-88A on MIL-88B hybrid: A promising eco-friendly hybrid from green synthesis to dual application (Adsorption and photocatalysis) in tetracycline and dyes removal.

作者信息

Rabeie Bahareh, Mahmoodi Niyaz Mohammad

机构信息

Department of Environmental Research, Institute for Color Science and Technology, Tehran, Iran.

Department of Environmental Research, Institute for Color Science and Technology, Tehran, Iran.

出版信息

J Colloid Interface Sci. 2024 Jan 15;654(Pt A):495-522. doi: 10.1016/j.jcis.2023.10.060. Epub 2023 Oct 14.

Abstract

Herein, the green synthesis of heterogeneous dual functional MIL88A-on-MIL88B hybrids (MIL: Materials InstituteLavoisier) with different amounts of MIL88B compared to MIL88A, including 1:2, 1:1, and 2:1, has been carried out. The photocatalytic degradation of tetracycline and adsorption of tetracycline and dyes (Direct Red 80, Direct Red 23, Acid Blue 92, and Reactive Orange 14) were investigated. Although the ratio of MIL88A-on-MIL88B (1:1) hybrid displayed the best activity, there is a slight difference in the photocatalytic performance of the other mass ratios studied. The result revealed that after 70 min of forming MIL88A on MIL88B, the best pollutant removal performance is obtained. During the limited synthesis time, the lopsided growth of MIL88A on the MIL88B surface limits the formation of sufficient functional groups and new pores between MIL88B as the substrate and MIL88A, which are effective and decisive in the performance. In the photocatalytic studies, the synthesized composite had good compatibility with the zero-order kinetics, and hydroxyl radicals were recognized as the most active species in the photocatalytic reaction. In the adsorption process, the MIL88A-on-MIL88A composite followed pseudo-second-order kinetics and the Langmuir isotherm. Besides, mechanisms such as π-π interaction/stacking, hydrogen bonding, and π-metal interaction were proposed for the pollutant adsorption process.

摘要

在此,已开展了具有不同MIL88B与MIL88A含量比(包括1:2、1:1和2:1)的非均相双功能MIL88A负载于MIL88B杂化物(MIL:拉瓦锡材料研究所)的绿色合成。研究了四环素的光催化降解以及四环素和染料(直接红80、直接红23、酸性蓝92和活性橙14)的吸附。尽管MIL88A负载于MIL88B(1:1)杂化物表现出最佳活性,但在所研究的其他质量比的光催化性能上存在细微差异。结果表明,在MIL88B上形成MIL88A 70分钟后,获得了最佳的污染物去除性能。在有限的合成时间内。MIL88A在MIL88B表面的不均衡生长限制了作为底物的MIL88B与MIL88A之间足够官能团和新孔的形成,而这些官能团和新孔对性能具有有效且决定性的作用。在光催化研究中,合成的复合材料与零级动力学具有良好的兼容性,并且羟基自由基被认为是光催化反应中最具活性的物种。在吸附过程中,MIL88A负载于MIL88A复合材料遵循准二级动力学和朗缪尔等温线。此外,还提出了诸如π-π相互作用/堆积、氢键和π-金属相互作用等机制用于污染物吸附过程。

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