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通过配体调节可控合成铜有机骨架以增强类芬顿光催化。

Controllable synthesis of copper-organic frameworks via ligand adjustment for enhanced photo-Fenton-like catalysis.

机构信息

College of Science, Shenyang University of Chemical Technology, Shenyang 110142, PR China.

College of Chemistry, Liaoning University, Shenyang 110036, PR China.

出版信息

J Colloid Interface Sci. 2023 Sep 15;646:107-117. doi: 10.1016/j.jcis.2023.05.021. Epub 2023 May 9.

Abstract

The efficient heterogeneous photo-Fenton-like catalysts based on two secondary ligand-induced Cu(II) metal-organic frameworks (Cu-MOF-1 and Cu-MOF-2) were constructed for the first time and investigated for the degradation of multiple antibiotics. Herein, two novel Cu-MOFs were prepared using mixed ligands by a facile hydrothermal method. The one-dimensional (1D) nanotube-like structure could be obtained by using V-shaped, long and rigid 4,4'-bis(3-pyridylformamide)diphenylether (3-padpe) ligand in Cu-MOF-1, while polynuclear Cu cluster could be prepared more easily by using short and small isonicotinic acid (HIA) ligand in Cu-MOF-2. Their photocatalytic performances were measured by degradation of multiple antibiotics in Fenton-like system. Comparatively, Cu-MOF-2 exhibited superior photo-Fenton-like performance under visible light irradiation. The outstanding catalytic performance of Cu-MOF-2 was ascribed to the tetranuclear Cu cluster configuration and excellent ability of photoinduced charge transfer and hole separation thus improved the photo-Fenton activity. In addition, Cu-MOF-2 showed high photo-Fenton activity in wide pH working range 3-10 and maintained wonderful stability after five cyclic experiments. The degradation intermediates and pathways were deeply studied. The main active species h, O and OH worked together in photo-Fenton-like system and possible degradation mechanism was proposed. This study provided a new approach to design the Cu-based MOFs Fenton-like catalysts.

摘要

首次构建了基于两种次级配体诱导的 Cu(II) 金属有机骨架(Cu-MOF-1 和 Cu-MOF-2)的高效非均相类光芬顿催化剂,用于降解多种抗生素。在此,通过简便的水热法使用混合配体制备了两种新型 Cu-MOF。在 Cu-MOF-1 中,使用 V 形、长而刚性的 4,4'-双(3-吡啶甲酰胺)二苯醚(3-padpe)配体可以得到一维(1D)纳米管状结构,而在 Cu-MOF-2 中,使用短而小的异烟酸(HIA)配体更容易制备多核 Cu 簇。通过类芬顿体系中多种抗生素的降解来衡量它们的光催化性能。相比之下,Cu-MOF-2 在可见光照射下表现出优异的类芬顿性能。Cu-MOF-2 的卓越催化性能归因于四核 Cu 簇构型和出色的光致电荷转移和空穴分离能力,从而提高了光芬顿活性。此外,Cu-MOF-2 在宽 pH 工作范围 3-10 中表现出高的光芬顿活性,并在五次循环实验后保持出色的稳定性。深入研究了降解中间体和途径。主要的活性物质 h、O 和 OH 在类光芬顿体系中协同作用,并提出了可能的降解机制。本研究为设计基于 Cu 的 MOFs 类芬顿催化剂提供了一种新方法。

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