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首页> 外文期刊>Chemistry: A European journal >Bifunctional Molecular Photoswitches Based on Overcrowded Alkenes for Dynamic Control of Catalytic Activity in Michael Addition Reactions
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Bifunctional Molecular Photoswitches Based on Overcrowded Alkenes for Dynamic Control of Catalytic Activity in Michael Addition Reactions

机译:基于过度拥挤的烯烃的双官能分子照片动态控制迈克尔加法反应中催化活性的动态控制

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The emerging field of artificial photoswitchable catalysis has recently shown striking examples of functional light-responsive systems allowing for dynamic control of activity and selectivity in organocatalysis and metal-catalysed transformations. While our group has already disclosed systems featuring first generation molecular motors as the switchable central core, a design based on second generation molecular motors is lacking. Here, the syntheses of two bifunctionalised molecular switches based on a photoresponsive tetrasubstituted alkene core are reported. They feature a thiourea substituent as hydrogen-donor moiety in the upper half and a basic dimethylamine group in the lower half. This combination of functional groups offers the possibility for application of these molecules in photoswitchable catalytic processes. The light-responsive central cores were synthesized by a Barton-Kellogg coupling of the prefunctionalized upper and lower halves. Derivatization using Buchwald-Hartwig amination and subsequent introduction of the thiourea substituent afforded the target compounds. Control of catalytic activity in the Michael addition reaction between (E)-3-bromo-β-nitrostyrene and 2,4-pentanedione is achieved upon irradiation of stable-(E) and stable-(Z) isomers of the bifunctional catalyst 1. Both isomers display a decrease in catalytic activity upon irradiation to the metastable state, providing systems with the potential to be applied as ON/ OFF catalytic photoswitches.
机译:最近显示了人造照片的新兴领域最近显示了功能性光响应系统的引人注目的例子,其允许有机成分和金属催化转化中的活性和选择性的动态控制。虽然我们的小组已经公开了具有作为可切换中心核心的第一代分子电机的系统,但缺乏基于第二代分子电机的设计。这里,报道了基于光响应的四取代烯烃核心的两个双重官能化分子开关的合成。它们具有硫脲酰胺作为氢供体部分的上半部和碱性二甲胺基团。这种功能组的组合提供了在光学催化过程中施加这些分子的可能性。通过5个官能化上半部的Barton-Kellogg耦合合成光响应的中央核心。使用Buchwald-Hartwig胺化的衍生化并随后引入硫脲取代基得到靶化合物。在双官能催化剂1的稳定 - (e)和稳定 - (Z)异构体的照射时,在双官能催化剂1的稳定 - (Z)异构体上实现(e)-3-溴-β-硝基苯乙烯和2,4-戊酰基之间的催化活性。两种异构体在照射到亚稳态时,两种异构体显示催化活性的降低,提供有可能施加的催化光学性能的系统。

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