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Glass wool supported ruthenium complexes: versatile, recyclable heterogeneous photoredox catalysts

机译:玻璃棉支持钌配合物:异构photoredox多才多艺,可回收利用催化剂

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摘要

The present study describes the development of heterogeneous photoredox catalysts based on ruthenium complexes anchored onto a glass surface (glass wool). These easy-to-handle, inexpensive and reusable fiber-like materials allow Ru-based photoredox catalysis in the heterogeneous phase. Here we report the synthesis and characterization of these new materials, and evaluate their remarkable photocatalytic activity to engage in aerobic photooxidative reactions. In particular, the oxidative hydroxylation of arylboronic acids and the singlet oxygen-mediated photooxidation of 9,10-dimethylanthracene (DMA) and 2-ethylfuran are achieved with excellent yields (>95%) within 6 h of irradiation using blue LEDs (lambda similar to 450 nm). Further, the materials can be reused at least 6 times without any significant loss of activity, thus revealing their high stability and recyclability. The strategy takes advantage of the broad knowledge on Ru-based photocatalysis while adding the recovery and reuse benefits of heterogeneous catalysis. Additionally, these materials are promising alternatives for flow photochemistry. This approach that allows attachment of Ru complexes onto glass wool can be extended for use to other transition-metal complexes as photoredox catalysts.
机译:本研究描述了的发展异构photoredox催化剂基础上钌配合物固定在玻璃表面(玻璃棉)。和可重用的改性材料允许Ru-basedphotoredox催化异构的阶段。在这里,我们报告的合成和表征这些新材料,并评估他们显著的光催化活动参与有氧photooxidative反应。arylboronic酸的氧化羟基化和单线态oxygen-mediated光致氧化9日,10-dimethylanthracene (DMA)和2-ethylfuran实现优秀的内部收益率(> 95%)6 h(辐照使用蓝色led(λ类似于450海里)。至少6次重复使用没有任何意义损失的活动,从而揭示其高稳定性和可回收性。Ru-based广泛知识的优势光催化作用,同时加入复苏和重用多相催化的好处。此外,这些材料都是有前途的选择流光化学。方法,允许附件俄文复合物玻璃棉上可以扩展到其他使用过渡金属配合物作为photoredox催化剂。

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