Ji Kegong, D'Souza Brendan, Nelson Jon, Zhang Liming
Department of Chemistry and Biochemistry University of California Santa Barbara, California (USA).
J Organomet Chem. 2014 Nov 1;770:142-145. doi: 10.1016/j.jorganchem.2014.08.005.
Inductive perturbations of C-C triple bonds are shown to dictate the regiochemistry of gold-catalyzed oxidation of internal C-C triple bonds in the cases of propargylic ethers, resulting in highly regioselective formation of β-alkoxy-α,β-unsaturated ketones (up to >50/1 selectivity) via α-oxo gold carbene intermediates. Ethers derived from primary propargylic alcohols can be reliably transformed in good yields, and various functional groups are tolerated. With substrates derived from secondary propargylic alcohols, the development of a new ,-bidentate ligand enables the minimization of competing alkyl group migration to the gold carbene center over the desired hydride migration; the preferred migration of a phenyl group, however, results in efficient formation of a α-phenyl-β-alkoxy-α,β-unsaturated ketone. These results further advance the surrogacy of a propargyl moiety to synthetically versatile enone function with reliable and readily predictable regioselectivity.
在炔丙基醚的情况下,C-C三键的诱导扰动决定了金催化的内部C-C三键氧化反应的区域化学,通过α-氧代金卡宾中间体,高度区域选择性地形成β-烷氧基-α,β-不饱和酮(选择性高达>50/1)。源自伯炔丙醇的醚能够以良好的产率可靠地转化,并且能耐受各种官能团。对于源自仲炔丙醇的底物,一种新型的双齿配体的开发能够使竞争的烷基迁移到金卡宾中心的情况比所需的氢化物迁移降至最低;然而,苯基的优先迁移导致高效形成α-苯基-β-烷氧基-α,β-不饱和酮。这些结果进一步推动了炔丙基部分向具有可靠且易于预测的区域选择性的合成多功能烯酮官能团的替代。