Babaahmadi Rasool, Dasgupta Ayan, Hyland Christopher J T, Yates Brian F, Melen Rebecca L, Ariafard Alireza
School of Natural Sciences (Chemistry), University of Tasmania, Private Bag 75, Hobart, Tasmania, 7001, Australia.
Cardiff Catalysis Institute, School of Chemistry, Cardiff University, Main Building, Park Place, Cardiff, CF10 3AT, Cymru/Wales, UK.
Chemistry. 2022 Feb 19;28(11):e202104376. doi: 10.1002/chem.202104376. Epub 2022 Jan 27.
Diazo compounds have been largely used as carbene precursors for carbene transfer reactions in a variety of functionalization reactions. However, the ease of carbene generation from the corresponding diazo compounds depends upon the electron donating/withdrawing substituents either side of the diazo functionality. These groups strongly impact the ease of N release. Recently, tris(pentafluorophenyl)borane [B(C F ) ] has been shown to be an alternative transition metal-free catalyst for carbene transfer reactions. Herein, a density functional theory (DFT) study on the generation of carbene species from α-aryl α-diazocarbonyl compounds using catalytic amounts of B(C F ) is reported. The significant finding is that the efficiency of the catalyst depends directly on the nature of the substituents on both the aryl ring and the carbonyl group of the substrate. In some cases, the boron catalyst has negligible effect on the ease of the carbene formation, while in other cases there is a dramatic reduction in the activation energy of the reaction. This direct dependence is not commonly observed in catalysis and this finding opens the way for intelligent design of this and other similar catalytic reactions.
重氮化合物在各种官能团化反应中已被大量用作卡宾转移反应的卡宾前体。然而,从相应重氮化合物生成卡宾的难易程度取决于重氮官能团两侧的供电子/吸电子取代基。这些基团对氮的释放难易程度有很大影响。最近,三(五氟苯基)硼烷[B(C₆F₅)₃]已被证明是卡宾转移反应的一种替代无过渡金属催化剂。本文报道了一项使用催化量的B(C₆F₅)₃从α-芳基α-重氮羰基化合物生成卡宾物种的密度泛函理论(DFT)研究。重要发现是催化剂的效率直接取决于底物芳环和羰基上取代基的性质。在某些情况下,硼催化剂对卡宾形成的难易程度影响可忽略不计,而在其他情况下,反应的活化能会显著降低。这种直接依赖性在催化中并不常见,这一发现为这种及其他类似催化反应的智能设计开辟了道路。