Assembly State of Catalytic Modules as Chiral Switches in Asymmetric Strecker Amino Acid Synthesis

Self-assembled chiral polymetallic complexes often demonstrate novel properties as asymmetric catalysts. We report the three-dimensional structures of two such asymmetric catalysts (crystals A and B) for Strecker α,α-disubstituted amino acid synthesis. These complexes are constructed via assembly of...

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Veröffentlicht in:Journal of the American Chemical Society 2006-05, Vol.128 (21), p.6768-6769
Hauptverfasser: Kato, Nobuki, Mita, Tsuyoshi, Kanai, Motomu, Therrien, Bruno, Kawano, Masaki, Yamaguchi, Kentaro, Danjo, Hiroshi, Sei, Yoshihisa, Sato, Akihiro, Furusho, Sanae, Shibasaki, Masakatsu
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Sprache:eng
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Zusammenfassung:Self-assembled chiral polymetallic complexes often demonstrate novel properties as asymmetric catalysts. We report the three-dimensional structures of two such asymmetric catalysts (crystals A and B) for Strecker α,α-disubstituted amino acid synthesis. These complexes are constructed via assembly of the same chiral modules derived from d-glucose, but their assembly modes differ. The enantioselectivity in the Strecker reaction was dramatically switched, depending on which assembly mode was used:  the catalyst generated in situ whose structure is represented by crystal B, or by crystal A. These findings provide insight into the functional importance of higher-order structures of an artificial catalyst.
ISSN:0002-7863
1520-5126
DOI:10.1021/ja060841r