Complete Chiral Resolution Using Additive-Induced Crystal Size Bifurcation During Grinding

Grinding them down: By using a tailor-made additive, even in the absence of racemization in solution, abrasive grinding can yield an enantiopure solid state. This novel chiral resolution technique is based on an asymmetric bifurcation in the crystal size distribution as a result of stereoselective h...

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Veröffentlicht in:Angewandte Chemie (International ed.) 2009-01, Vol.48 (18), p.3278-3280
Hauptverfasser: Noorduin, Wim L, van der Asdonk, Pim, Meekes, Hugo, van Enckevort, Willem J.P, Kaptein, Bernard, Leeman, Michel, Kellogg, Richard M, Vlieg, Elias
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container_end_page 3280
container_issue 18
container_start_page 3278
container_title Angewandte Chemie (International ed.)
container_volume 48
creator Noorduin, Wim L
van der Asdonk, Pim
Meekes, Hugo
van Enckevort, Willem J.P
Kaptein, Bernard
Leeman, Michel
Kellogg, Richard M
Vlieg, Elias
description Grinding them down: By using a tailor-made additive, even in the absence of racemization in solution, abrasive grinding can yield an enantiopure solid state. This novel chiral resolution technique is based on an asymmetric bifurcation in the crystal size distribution as a result of stereoselective hampered crystal growth. R=o-tolyl.
doi_str_mv 10.1002/anie.200806214
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source MEDLINE; Access via Wiley Online Library
subjects amino acids
chiral resolution
chirality
crystal engineering
Crystallization - methods
grinding
Stereoisomerism
title Complete Chiral Resolution Using Additive-Induced Crystal Size Bifurcation During Grinding
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