Orthopalladated complexes as phase-transfer catalysts for asymmetric alkylation of achiral Schiff base esters

Authors
Kim, Dae HyunIm, Jin KyuKim, Dae WonLee, HyunjooKim, HongganKim, Hoon SikCheong, MinserkMukherjee, Deb Kumar
Issue Date
2010-11
Publisher
SPRINGER
Citation
TRANSITION METAL CHEMISTRY, v.35, no.8, pp.949 - 957
Abstract
The asymmetric C-alkylation of benzophenone Schiff base glycine esters has been achieved using a palladium(II) chiral complex as a phase-transfer catalyst. The aromatic moiety around the metal center and various physicochemical parameters were investigated to study their effect on the asymmetric alkylation reaction under phase-transfer conditions. Moderate enantioselectivity(30-40%) was achieved under room temperature conditions, which is a significant improvement compared to no enantioselectivity with a chiral palladium-salen complex reported earlier. Computer simulation studies indicate that coordination of the metal center with Z-enolate forming a square planar complex provides a favorable steric environment where the alpha-carbon atom of the enolate is available for enantioselective alkylation.
Keywords
ALPHA-AMINO-ACIDS; ENANTIOSELECTIVE SYNTHESIS; AMMONIUM-SALTS; IMMOBILIZATION; DIASTEREOMERS; DERIVATIVES; DIMERS; ROUTE; ALPHA-AMINO-ACIDS; ENANTIOSELECTIVE SYNTHESIS; AMMONIUM-SALTS; IMMOBILIZATION; DIASTEREOMERS; DERIVATIVES; DIMERS; ROUTE
ISSN
0340-4285
URI
https://pubs.kist.re.kr/handle/201004/130938
DOI
10.1007/s11243-010-9416-4
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KIST Article > 2010
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