Muratov Karim, Zaripov Emil, Berezovski Maxim V, Gagosz Fabien
Department of Chemistry and Biomolecular Sciences, University of Ottawa, Ottawa K1N 6N5, Canada.
J Am Chem Soc. 2024 Feb 14;146(6):3660-3674. doi: 10.1021/jacs.3c08943. Epub 2024 Feb 5.
Ligand-enabled oxidative addition of Csp-X bonds to Au(I) centers has recently appeared as a valuable strategy for the development of catalytic RedOx processes. Several cross-coupling reactions that were previously considered difficult to achieve were reported lately, thus expanding the synthetic potential of gold(I) complexes beyond the traditional nucleophilic functionalization of π-systems. MeDalPhos has played an important role in this development and, despite several studies on alternative structures, remains, so far, the only general ligand for such process. We report herein the discovery and DFT-enabled structural optimization of a new family of hemilabile (PN) ligands that can promote the oxidative addition of aryl iodides to gold(I). These flexible ligands, which possess a common 2-methylamino heteroaromatic -donor motif, are structurally and electronically tunable, beyond being easily accessible and affordable. The corresponding Au(I) complexes were shown to outperform the reactivity of (MeDalPhos)Au(I) in a series of alkoxy- and amidoarylations of alkenes. Their synthetic potential and comparatively higher reactivity were further highlighted in the thiotosylation of aryl iodides, a challenging unreported C-S cross-coupling reaction that could not be achieved under classical Pd(0/II) catalysis and that allows for general and divergent access to aryl sulfur derivatives.
配体促进的Csp-X键向Au(I)中心的氧化加成最近已成为开发催化氧化还原过程的一种有价值的策略。最近报道了一些以前认为难以实现的交叉偶联反应,从而将金(I)配合物的合成潜力扩展到了传统π体系的亲核官能化之外。MeDalPhos在这一发展中发挥了重要作用,尽管对替代结构进行了多项研究,但到目前为止,它仍然是此类过程唯一通用的配体。我们在此报告了一类新的半不稳定(PN)配体的发现及其通过密度泛函理论实现的结构优化,这类配体能够促进芳基碘化物向金(I)的氧化加成。这些灵活的配体具有常见的2-甲基氨基杂芳族供体基序,除了易于获得和价格低廉外,在结构和电子性质上也是可调节的。在一系列烯烃的烷氧基化和酰胺芳基化反应中,相应的金(I)配合物表现出比(MeDalPhos)Au(I)更高的反应活性。它们的合成潜力和相对较高的反应活性在芳基碘化物的硫代甲苯基化反应中得到了进一步凸显,这是一种具有挑战性的未报道的C-S交叉偶联反应,在经典的Pd(0/II)催化下无法实现,并且能够实现对芳基硫衍生物的通用和多样化合成。