ARTIKEL

Carbene‐Catalyzed Asymmetric Acetalization to Access Chiral 3‐Aryloxyphthalides

28.08.2025
Carbene‐Catalyzed Asymmetric Acetalization to Access Chiral 3‐Aryloxyphthalides

Von Wiley-VCH zur Verfügung gestellt

A novel N-heterocyclic carbene (NHC)-catalyzed enantioselective synthesis of aryloxyphthalides from phthalaldehyde and phenols were developed with broad substrate scope, providing up to 98% enantioselectivity with excellent yields. This strategy offers a practical solution for the enantioselective synthesis of aryloxyphthalides, expanding the utility of chiral acetals in asymmetric synthesis. The development of optically pure aryloxyphthalides may further benefit the synthesis of complex natural products containing phthalide moieties.


Abstract

Chiral acetals, particularly aryloxyacetals, are pivotal intermediates in organic synthesis, pharmaceuticals, and natural product synthesis. Aryloxyacetals have been utilized as chiral aldehyde equivalents in the total synthesis of biologically significant natural products. However, achieving high enantiocontrol in the synthesis of aryloxyphthalides remains a significant challenge due to side reactions and racemic product formation. Herein, we report a novel N-heterocyclic carbene (NHC)-catalyzed enantioselective synthesis of aryloxyphthalides from phthalaldehyde and phenols. Our methodology demonstrates broad substrate scope, providing up to 98% enantioselectivity with excellent yields. This strategy offers a practical solution for the enantioselective synthesis of aryloxyphthalides, expanding the utility of chiral acetals in asymmetric synthesis. The development of optically pure aryloxyphthalides may further benefit the synthesis of complex natural products containing phthalide moieties.

Verwandte Artikel

Carbene‐Catalyzed Asymmetric Acetalization to Access Chiral 3‐Aryloxyphthalides
Organic Fluorophores for Studying Lipid Membrane Structures and Dynamics
Carbene‐Catalyzed Asymmetric Acetalization to Access Chiral 3‐Aryloxyphthalides
Phosphine‐Free NNN Pincer Supported Cu(II) Catalysts for Sustainable Multi‐Component Synthesis of Pyrazolines and Pyrimidines via Dehydrogenation of Renewable Primary Alcohols
Carbene‐Catalyzed Asymmetric Acetalization to Access Chiral 3‐Aryloxyphthalides
CBr4 as an Efficient Halogen Bond Donor Catalyst in Pictet–Spengler Cyclizations: A Metal‐Free Approach to the Synthesis of Benzazepinoindoles and Tetrahydro‐β‐carbolines
Carbene‐Catalyzed Asymmetric Acetalization to Access Chiral 3‐Aryloxyphthalides
Stimuli‐Responsive Supramolecular Polymers of Mono‐ and Bis‐triazolylphenylazoaniline‐Functionalized Copillar[5]Arenes: With Distinctive Binding Modes
Carbene‐Catalyzed Asymmetric Acetalization to Access Chiral 3‐Aryloxyphthalides
From Inception to Innovation: 20 Years of Nanoarchitectonics