The
difference in the crystal structure and growth kinetics of
microtubes formed from l- and d-enantiomers of diphenylalanine
dipeptide is investigated both experimentally and theoretically by
computer simulation. The microtubes of l- and d-enantiomers
grown simultaneously and under identical experimental conditions possess
different crystallographic space groups, have essential difference
in sizes, and demonstrate different growth kinetics. Computer simulation
by molecular mechanics methods revealed a fundamental difference in
the interaction between structural units of microtubes of different
chiralities. A model describing chirality-dependent growth of microtubes
is proposed.
Acylative kinetic resolution of racemic amines occupies a highly important place among the methods for preparation of enantio enriched or pure amines. Nonenzymatic acylative kinetic resolution is usually carried out in the presence of chiral acyl‐transfer catalysts or under the action of chiral enantio‐ or diastereoselective resolving agents. Recently, this line of investigations has been rapidly developed and very interesting results of design and synthetic application of both new catalysts and chiral acylating agents have been obtained. This microreview summarizes the recent advances in this area.
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