Thiazolothiazole-based metal–organic frameworks for photocatalytic coupling of benzylamine and degradation of organic dyes†

IF 2.5 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY New Journal of Chemistry Pub Date : 2025-03-27 DOI:10.1039/D5NJ00340G
Jun-Fei Li, Jing-Wen Xu, Hui-Jun Feng, Qiao-Yun Liu and Jun-Wen Wang
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Abstract

Photocatalyzed organic transformations driven by visible light using metal–organic frameworks (MOFs) under mild conditions offer an effective strategy to tackle the challenges of energy depletion and environmental pollution. However, achieving effective photocatalytic oxidation of benzylamine under sunlight in mild air conditions remains a significant challenge. Herein, we synthesized three structurally similar Cd-MOFs by incorporating thiazolothiazole derivatives into the frame materials. The photocatalytic performance of the three MOFs was examined, revealing that Cd-3 demonstrated the highest photocatalytic activity. The broad light absorption range and suitable energy levels for photo-oxidation enable Cd-3 to exhibit excellent photocatalytic activity for the oxidative coupling of amines to imines. Additionally, Cd-3 shows remarkable photocatalytic degradation of cationic dyes. This exceptional photocatalytic ability is attributed to the effective separation of electron–hole pairs in the catalyst upon sunlight irradiation, facilitating redox reactions that generate active species. Ultimately, this work expands the potential applications of MOFs based on thiazolothiazole derivatives for photocatalytic organic transformations and offers new insights into the versatile applications of MOFs.

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噻唑基金属-有机框架光催化偶联苯胺和降解有机染料†
在温和条件下,利用可见光驱动的金属有机框架(mof)光催化有机转化为解决能源枯竭和环境污染的挑战提供了一种有效的策略。然而,在温和的空气条件下实现有效的光催化氧化苄胺仍然是一个重大的挑战。本文通过在框架材料中加入噻唑噻唑衍生物,合成了三种结构相似的cd - mof。测试了三种mof的光催化性能,结果表明Cd-3具有最高的光催化活性。广泛的光吸收范围和适宜的光氧化能级使Cd-3在胺与亚胺的氧化偶联中表现出优异的光催化活性。此外,Cd-3对阳离子染料有明显的光催化降解作用。这种特殊的光催化能力归因于在阳光照射下催化剂中的电子-空穴对的有效分离,促进氧化还原反应产生活性物质。最终,本研究扩展了基于噻唑噻唑衍生物的mof在光催化有机转化中的潜在应用,并为mof的多功能应用提供了新的见解。
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来源期刊
New Journal of Chemistry
New Journal of Chemistry 化学-化学综合
CiteScore
5.30
自引率
6.10%
发文量
1832
审稿时长
2 months
期刊介绍: A journal for new directions in chemistry
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