Impact of Catalyst Deuteration on the Reactivity of Chiral Phase-Transfer Organocatalysts

Chemistry. 2023 Sep 21;29(53):e202301866. doi: 10.1002/chem.202301866. Epub 2023 Jul 28.

Abstract

Site-specifically deuterated organocatalysts were prepared and found to show improved reactivity over the non-deuterated analogs. Two privileged C2 -symmetric chiral binaphthyl-modified tetraalkylammonium salts were selected for this study. The stability of these phase-transfer catalysts was generally improved by site-specific deuteration, though the degree of improvement was structure dependent. In particular, a large secondary kinetic isotope effect was observed for the tetradeuterated phase-transfer catalyst. The performance of these deuterated catalysts in the asymmetric catalytic alkylation of amino acid derivatives was better than that of non-deuterated analogs at low catalyst loadings. The results suggest that catalyst deuteration is a promising strategy for enhancing the stability and performance of organocatalysts.

Keywords: asymmetric catalysis; deuteration; kinetic isotope effects; organocatalysis; phase-transfer catalysis.