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利用新型光敏 WO/ZnO@NH-EY 纳米催化剂实现苯并色烯[4,3-]苯并色烯的绿色合成。

Eco-friendly synthesis of chromeno[4,3-]chromenes with a new photosensitized WO/ZnO@NH-EY nanocatalyst.

作者信息

Jalili Zahra, Tayebee Reza, Zonoz Farrokhzad M

机构信息

Department of Chemistry, School of Sciences, Hakim Sabzevari University Sabzevar 96179-76487 Iran

出版信息

RSC Adv. 2021 May 18;11(29):18026-18039. doi: 10.1039/d0ra09737c. eCollection 2021 May 13.

DOI:10.1039/d0ra09737c
PMID:35480176
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9033197/
Abstract

A new heterogeneous photoredox nanocatalyst WO/ZnO@NH-EY (EY: eosin Y) was fabricated and characterized employing some instrumental techniques such as XRD, FT-IR, ICP, TGA, and SEM. The photocatalytic efficiency of the prepared material was investigated in the preparation of various chromeno[4,3-]chromenes a simple and practical method. The chromene derivatives were prepared through the condensation of aromatic aldehydes, dimedone, and coumarin under an open-air atmosphere in the presence of a green LED under solventless conditions. The significant advantages of this new method include low reaction time, easy work-up, cost-effective, wide substrate scope, excellent yield, and complete atom economy of the final products. Moreover, the prepared photocatalyst could be frequently recovered up to four times with only a little decrease in the catalytic activity. Furthermore, the progress of the condensation reaction is demonstrated to occur a radical mechanism, which shows that reactive species such as ˙O and OH˙ together with h would be involved in the photocatalytic process. Stability and reusability studies also warranty good reproducibility of the nanocatalyst for at least 4 runs. Eventually, a hot filtration test ensured that the nanohybrid catalyst is stable in the reaction medium and its catalytic activity originates from the whole undecomposed conjugated composite.

摘要

制备了一种新型的多相光氧化还原纳米催化剂WO/ZnO@NH-EY(EY:曙红Y),并采用XRD、FT-IR、ICP、TGA和SEM等仪器技术对其进行了表征。通过一种简单实用的方法,研究了所制备材料在各种色烯并[4,3 -]色烯制备中的光催化效率。色烯衍生物是在无溶剂条件下,在绿色LED光照下,于露天气氛中通过芳醛、二氢嘧啶酮和香豆素的缩合反应制备的。这种新方法的显著优点包括反应时间短、后处理简单、成本效益高、底物范围广、产率高以及最终产物的原子经济性完全。此外,所制备的光催化剂可以频繁回收多达四次,催化活性仅略有下降。此外,缩合反应的进程被证明是通过自由基机理进行的,这表明诸如˙O 和OH˙ 以及h 等活性物种参与了光催化过程。稳定性和可重复使用性研究也保证了纳米催化剂至少4次运行具有良好的重现性。最终,热过滤试验确保了纳米杂化催化剂在反应介质中稳定,其催化活性源于整个未分解的共轭复合材料。

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