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Visible Light-Emitting Diode Light-Driven Aerial Oxidation of Aldehydes under Catalyst and Solvent-Free Conditions

机译:可见光发光二极管在催化剂和无溶剂条件下对醛类进行光驱动空中氧化

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Background: Green and sustainable method for the oxidation of aldehydes into acids is now in demand as carboxylic acids are important and versatile intermediates. In this context, visible LED light-promoted aerial oxidation can be efficient and greener protocol. Objective: Herein, we have demonstrated a visible LED light-promoted efficient and greener protocol for the aerial oxidation of aromatic aldehydes into corresponding acids in the absence of any additives, base, catalyst, and oxidant. Methods: The oxidation of aromatic aldehydes was irradiated by an LED light at room temperature under an open atmosphere, monitored by TLC. The rate of oxidation was also monitored using different LED lights by UV-Vis studies. The products were purified by column chromatography using silica gel, and the mixture of ethyl acetate/petroleum ether as an eluting solvent and the pure products were confirmed by their melting point determination and NMR spectroscopic analysis. Results: The aldehydes were successfully converted into corresponding acids with good isolated yields (60-90 ) by this protocol, where blue LED light (l ~ 490 nm) was found to be the best choice. Conclusion: The present protocol of aerial oxidation of aromatic aldehydes into corresponding acids under visible LED light has been carried out in the absence of catalyst, oxidant, base, and any other additives. The higher isolated yields, no byproduct formation, and neat reaction conditions are the major advantages of the protocol.
机译:背景:由于羧酸是重要且用途广泛的中间体,因此现在需要将醛氧化成酸的绿色和可持续方法。在这种情况下,可见光LED光促进空中氧化可以是高效和绿色的协议。目的:本文展示了一种可见的LED光促进高效、绿色的协议,用于在没有任何添加剂、碱、催化剂和氧化剂的情况下将芳香醛空中氧化成相应的酸。方法:在室温下,在开放气氛下,用LED灯照射芳香醛的氧化,并用TLC监测。还通过紫外-可见光研究使用不同的 LED 灯监测氧化速率。采用硅胶柱层析法纯化产物,以乙酸乙酯/石油醚为洗脱溶剂,通过熔点测定和核磁共振波谱分析确认纯品与纯品。结果:通过该方案成功将醛转化为相应的酸,分离收率良好(60-90%),其中蓝色LED光(l~490 nm)是最佳选择。结论:本方案在可见光LED灯下将芳香醛空中氧化成相应酸,是在无催化剂、氧化剂、碱和任何其他添加剂的情况下进行的。较高的分离产量、无副产物形成和纯净的反应条件是该方案的主要优点。

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