Catalytic Nanoassemblies Formed by Short Peptides Promote Highly Enantioselective Transfer Hydrogenation

Self-assembly enables formation of incredibly diverse supramolecular structures with practically important functions from simple and inexpensive building blocks. Here, we show how a semirational, bottom-up approach to create emerging properties can be extended to a design of highly enantioselective...

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Veröffentlicht in:ACS nano 2019-08, Vol.13 (8), p.9292-9297
Hauptverfasser: Dolan, Martin A, Basa, Prem N, Zozulia, Oleksii, Lengyel, Zsófia, Lebl, René, Kohn, Eric M, Bhattacharya, Sagar, Korendovych, Ivan V
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Sprache:eng
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Zusammenfassung:Self-assembly enables formation of incredibly diverse supramolecular structures with practically important functions from simple and inexpensive building blocks. Here, we show how a semirational, bottom-up approach to create emerging properties can be extended to a design of highly enantioselective catalytic nanoassemblies. The designed peptides comprising as few as two amino acid residues spontaneously self-assemble in the presence of metal ions to form supramolecular, vesicle-like nanoassemblies that promote transfer hydrogenation of ketones in an aqueous phase with excellent conversion rates and enantioselectivities (>90% ee).
ISSN:1936-0851
1936-086X
DOI:10.1021/acsnano.9b03880