Normandie Univ., UNILEHAVRE, FR 3038 CNRS, URCOM 76600 Le Havre, EA 3221, INC3 M CNRS-FR 3038 UFR ST, BP:1123, 25 rue Philipe Lebon, 76063, Le Havre Cedex, France.
Université de Nouakchott Al-Aasriya, Nouakchott, Mauritanie, UCME, BP 5026, Nouakchott, Mauritanie.
Chemistry. 2021 Nov 5;27(62):15440-15449. doi: 10.1002/chem.202102357. Epub 2021 Oct 4.
Iron-based catalysts were applied in cascade-type reactions for the synthesis of different carbonyl compounds. The reactions proceeded by a new iron-catalyzed cascade of alkynylation/hydration by using both the σ- and π-Lewis acid properties of iron salts. The alkynylation reactions of several endo and exocyclic acetoxylactams were achieved with three different catalysts including FeCl ⋅ 6H O, FeCl , and Fe(OTf) showing the efficiency of σ-Lewis acidity of iron (III) salts in catalyzing the alkynylation reaction. We also demonstrated that the reaction sequence could be shortened by the direct use of hydroxylactams, leading to an environmentally friendly protocol, avoiding the need to perform unnecessary lengthy steps. A combination of the hard/soft iron Lewis acid properties was then used to implement an unprecedented tandem intermolecular alkynylation/intramolecular hydration sequence allowing expedient access to a new carbonyl structures from trivial materials.
铁基催化剂在级联反应中被应用于合成不同的羰基化合物。这些反应通过一种新的铁催化级联炔基化/水合反应进行,利用铁盐的σ-和π-Lewis 酸性质。使用三种不同的催化剂,包括 FeCl ⋅ 6H O、FeCl 和 Fe(OTf),实现了几种内环和中环乙酰氧基内酰胺的炔基化反应,证明了铁(III)盐的σ-Lewis 酸性在催化炔基化反应中的效率。我们还表明,通过直接使用羟基内酰胺,可以缩短反应序列,从而形成一种环保的方案,避免了进行不必要的冗长步骤的需要。然后,硬/软铁 Lewis 酸性质的组合被用于实施前所未有的串联分子间炔基化/分子内水合反应序列,从而从平凡的材料中方便地获得新的羰基结构。