Issue 18, 2024

Dinuclear zinc catalysis of a kinetic resolution strategy for distinguishing one pair of diastereoisomers from multiple stereoisomers

Abstract

A new kinetic resolution strategy of distinguishing four stereoisomers is realized. The dinuclear zinc catalysts based on a multidentate semi-azacrown ether ligand and ZnEt2 are identified as superior catalysts for this transformation. The highly enantioselective kinetic resolution of 1-tosylindoline-2,3-diols has been achieved via a reverse hemiacetal/tautomerization reaction. Remarkably, the enediol intermediates can be captured by unsaturated nitro compounds via a Michael addition reaction. In addition, the products could be transformed to indolin-3-one and benzoxazine spiro-pyran derivatives. A proposed mechanism was assumed to explain the observed KR results and enantioselectivity.

Graphical abstract: Dinuclear zinc catalysis of a kinetic resolution strategy for distinguishing one pair of diastereoisomers from multiple stereoisomers

Supplementary files

Article information

Article type
Research Article
Submitted
10 Jun 2024
Accepted
18 Jul 2024
First published
20 Jul 2024

Org. Chem. Front., 2024,11, 5172-5178

Dinuclear zinc catalysis of a kinetic resolution strategy for distinguishing one pair of diastereoisomers from multiple stereoisomers

Y. Zhai, J. Wen, M. Liu, G. Mei, S. Jia, M. Wang and Y. Hua, Org. Chem. Front., 2024, 11, 5172 DOI: 10.1039/D4QO01051E

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