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Selective photocatalytic C–C bond cleavage under ambient conditions with earth abundant vanadium complexes

机译:在环境条件下使用富地球钒络合物进行选择性光催化C–C键裂解

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摘要

Selective C–C bond cleavage under ambient conditions is a challenging chemical transformation that can be a valuable tool for organic syntheses and macromolecular disassembly. Herein, we show that base metal vanadium photocatalysts can harvest visible light to effect the chemoselective C–C bond cleavage of lignin model compounds under ambient conditions. Lignin, a major aromatic constituent of non-food biomass, is an inexpensive, accessible source of fine chemical feedstocks such as phenols and aryl ethers. However, existing lignin degradation technologies are harsh and indiscriminately degrade valuable functional groups to produce intractable mixtures. The selective, photocatalytic depolymerization of lignin remains underexplored. In the course of our studies on lignin model compounds, we have uncovered a new C–C activation reaction that takes place under exceptionally mild conditions with high conversions. We present our fundamental studies on representative lignin model compounds, with the aim of expanding and generalizing the substrate scope in the future. Visible light is employed in the presence of earth-abundant vanadium oxo catalysts under ambient conditions. Selective C–C bond cleavage leads to valuable and functionally rich fine chemicals such as substituted aryl aldehydes and formates. Isotope labeling experiments, product analyses, and intermediate radical trapping, together with density functional theory studies, suggest a unique pathway that involves a photogenerated T1 state during the C–C bond cleavage reactions. Our study demonstrates a sustainable approach to harvest sunlight for an unusual, selective bond activation, which can potentially be applied in organic transformations and biomass valorization.
机译:在环境条件下进行选择性C–C键断裂是一项具有挑战性的化学转化,可以成为有机合成和大分子拆卸的宝贵工具。在这里,我们表明贱金属钒光催化剂可以收集可见光,以在环境条件下影响木质素模型化合物的化学选择性C–C键裂解。木质素是非食品生物质的主要芳香成分,是一种廉价,易获得的精细化工原料,如苯酚和芳基醚。然而,现有的木质素降解技术是苛刻的并且不加选择地降解有价值的官能团以产生难处理的混合物。木质素的选择性,光催化解聚仍未开发。在我们对木质素模型化合物的研究过程中,我们发现了一种新的C–C活化反应,该反应在异常温和的条件下发生了高转化率。我们提出了对代表性木质素模型化合物的基础研究,目的是在将来扩大和推广底物范围。在环境条件下,在存在大量稀土的钒氧羰基催化剂的情况下,使用可见光。选择性的C–C键断裂可产生有价值的且功能丰富的精细化学品,例如取代的芳基醛和甲酸酯。同位素标记实验,产物分析和中间自由基捕获,再加上密度泛函理论研究,提出了一条独特的途径,涉及在C–C键断裂反应过程中光生T1态。我们的研究表明了一种可持续的方法来收获阳光以进行异常的,选择性的键活化,该活化可潜在地应用于有机转化和生物质增值。

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