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基于苯并三噻吩的共价有机框架对药物和个人护理产品光催化降解的电子推拉效应

Electron Push-Pull Effect of Benzotrithiophene-Based Covalent Organic Frameworks on the Photocatalytic Degradation of Pharmaceuticals and Personal Care Products.

作者信息

Guo Hongguang, He Jiaqin, Guo Yixi, Chang Yunxi, Ju Haidong, Li Yizhou

机构信息

School of Chemistry and Chemical Engineering, Kunming University, Kunming 650214, China.

College of Physics Science and Technology, Kunming University, Kunming 650214, China.

出版信息

Molecules. 2025 Jan 16;30(2):336. doi: 10.3390/molecules30020336.

Abstract

A covalent organic framework (COF) has emerged as a promising photocatalyst for the removal of pharmaceutical and personal care product (PPCP) contaminants; however, high-performance COF photocatalysts are still scarce. In this study, three COF photocatalysts were successfully synthesized by the condensation of benzo[1,2-b:3,4-b':5,6-b'']trithiophene-2,5,8-tricarbaldehyde (BTT) with 4,4',4''-(1,3,5-triazine-2,4,6-triyl)trianiline (TAPT), 1,3,5-Tris(4-aminophenyl)benzene (TAPB), and 4,4',4''-nitrilotris(benzenamine) (TAPA), namely, BTT-TAPA, BTT-TAPB, and BTT-TAPT, respectively. The surface areas of BTT-TAPA, BTT-TAPB, and BTT-TAPT were found to be 800.46, 1203.60, and 1413.58 cm∙g, respectively, providing abundant active sites for photocatalytic reactions. Under visible-light irradiation, BTT-TAPT exhibited the highest removal rate of tetracycline (TC), reaching 82.7% after 240 min. The superior photocatalytic performance of BTT-TAPT was attributed to its large specific surface area and the strong electron-acceptor properties of the triazine group. Electron paramagnetic resonance capture experiments and liquid chromatograph mass spectrometer analysis confirmed that superoxide radicals played a pivotal role in the degradation of TC and ciprofloxacin. Moreover, BTT-TAPT exhibited high stability and reproducibility during the photocatalytic degradation process. This study confirms that BTT-based COFs are a class of promising photocatalysts for the degradation of PPCPs in water, and their performance can be further optimized by tuning the structure and composition of the frameworks.

摘要

共价有机框架(COF)已成为一种有前景的光催化剂,用于去除药物和个人护理产品(PPCP)污染物;然而,高性能的COF光催化剂仍然稀缺。在本研究中,通过苯并[1,2-b:3,4-b':5,6-b'']三噻吩-2,5,8-三甲醛(BTT)与4,4',4''-(1,3,5-三嗪-2,4,6-三基)三苯胺(TAPT)、1,3,5-三(4-氨基苯基)苯(TAPB)和4,4',4''-次氮基三(苯甲胺)(TAPA)缩合,成功合成了三种COF光催化剂,分别为BTT-TAPA、BTT-TAPB和BTT-TAPT。发现BTT-TAPA、BTT-TAPB和BTT-TAPT的表面积分别为800.46、1203.60和1413.58 cm²·g,为光催化反应提供了丰富的活性位点。在可见光照射下,BTT-TAPT对四环素(TC)的去除率最高,240分钟后达到82.7%。BTT-TAPT优异的光催化性能归因于其大的比表面积和三嗪基团的强电子受体性质。电子顺磁共振捕获实验和液相色谱-质谱分析证实,超氧自由基在TC和环丙沙星的降解中起关键作用。此外,BTT-TAPT在光催化降解过程中表现出高稳定性和可重复性。本研究证实,基于BTT的COF是一类有前景的用于降解水中PPCP的光催化剂,其性能可通过调整框架的结构和组成进一步优化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a295/11767667/54e3279de93e/molecules-30-00336-g001.jpg

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