Enantioselective synthesis of saddle-shaped eight-membered lactones with inherent chirality via organocatalytic high-order annulation

IF 3.784 3区 化学 Q1 Chemistry
Shao-Qing Shi, Chen-Chang Cui, Lin-Lin Xu, Jin-Peng Zhang, Wen-Juan Hao, Jianyi Wang, Bo Jiang
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引用次数: 0

Abstract

Inherently chiral medium-ring derivatives have important applications in many research fields, such as materials science, molecular recognition, and asymmetric catalysis. However, the enantioselective assembly of these molecules, especially by organocatalytic strategies, remains a formidable challenge, and few methods are available. Here, we report the enantioselective NHC-catalyzed (NHC: N-heterocyclic carbenes) formal high-order (5 + 3) annulation of 1-(2-indolyl)naphthalen-2-ols with ynals. In the presence of an NHC pre-catalyst, base, Lewis acid and oxidant, this protocol enables the catalytic formation of C–C and C-O bonds, providing practical and facile access to an array of inherently chiral saddle-shaped eight-membered lactones featuring an oxocin-2-one scaffold with structural diversity in good efficiency and excellent enantiocontrol. Moreover, the scale-up preparation and representative late-stage transformations of the eight-membered lactones further demonstrate the application potential of this synthetic technology.

Abstract Image

通过有机催化高阶环化技术对具有固有手性的鞍形八元内酯进行对映选择性合成
固有手性中环衍生物在材料科学、分子识别和不对称催化等许多研究领域都有重要应用。然而,这些分子的对映选择性组装,尤其是通过有机催化策略组装,仍然是一项艰巨的挑战,而且可用的方法很少。在此,我们报告了 NHC 催化(NHC:N-杂环碳烯)1-(2-吲哚基)萘-2-醇与炔醛的对映选择性高阶(5 + 3)形式环化反应。在 NHC 前催化剂、碱、路易斯酸和氧化剂存在的条件下,该方案能够催化形成 C-C 和 C-O 键,从而提供了切实可行、简便易行的途径来制备一系列固有手性的鞍形八元内酯,这些内酯以具有结构多样性的氧杂蒽-2-酮为支架,具有良好的效率和出色的对映体控制能力。此外,八元内酯的放大制备和具有代表性的后期转化进一步证明了该合成技术的应用潜力。
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来源期刊
ACS Combinatorial Science
ACS Combinatorial Science CHEMISTRY, APPLIED-CHEMISTRY, MEDICINAL
自引率
0.00%
发文量
0
审稿时长
1 months
期刊介绍: The Journal of Combinatorial Chemistry has been relaunched as ACS Combinatorial Science under the leadership of new Editor-in-Chief M.G. Finn of The Scripps Research Institute. The journal features an expanded scope and will build upon the legacy of the Journal of Combinatorial Chemistry, a highly cited leader in the field.
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