Literature DB >> 28677611

Synthesis and crystal structures of two structurally related kryptoracemates.

Philipp Kramer1, Michael Bolte2.   

Abstract

Kryptoracemates are racemic compounds (pairs of enantiomers) that crystallize in Sohnke space groups (space groups that contain neither inversion centres nor mirror or glide planes nor rotoinversion axes). Thus, the two symmetry-independent molecules cannot be transformed into one another by any symmetry element present in the crystal structure. Usually, the conformation of the two enantiomers is rather similar if not identical. Sometimes, the two enantiomers are related by a pseudosymmetry element, which is often a pseudocentre of inversion, because inversion symmetry is thought to be favourable for crystal packing. We obtained crystals of two kryptoracemates of two very similar compounds differing in just one residue, namely rac-N-[(1S,2R,3S)-2-methyl-3-(5-methylfuran-2-yl)-1-phenyl-3-(pivalamido)propyl]benzamide, C27H32N2O3, (I), and rac-N-[(1S,2S,3R)-2-methyl-3-(5-methylfuran-2-yl)-1-phenyl-3-(propionamido)propyl]benzamide dichloromethane hemisolvate, C25H28N2O3·0.5CH2Cl2, (II). The crystals of both compounds contain both enantiomers of these chiral molecules. However, since the space groups [P212121 for (I) and P1 for (II)] contain neither inversion centres nor mirror or glide planes nor rotoinversion axes, there are both enantiomers in the asymmetric unit, which is a rather uncommon phenomenon. In addition, it is remarkable that (II) contains two pairs of enantiomers in the asymmetric unit. In the crystal, molecules are connected by intermolecular N-H...O hydrogen bonds to form chains or layered structures.

Entities:  

Keywords:  1,3-diamines; Sohnke space groups; acyclic stereoselection; crystal structure; kryptoracemates; pseudosymmetry

Year:  2017        PMID: 28677611     DOI: 10.1107/S2053229617009408

Source DB:  PubMed          Journal:  Acta Crystallogr C Struct Chem        ISSN: 2053-2296            Impact factor:   1.172


  1 in total

1.  An Enamide-Based Domino Reaction for a Highly Stereoselective Synthesis of Tetrahydropyrans.

Authors:  Philipp Kramer; Jennifer Grimmer; Michael Bolte; Georg Manolikakes
Journal:  Angew Chem Int Ed Engl       Date:  2019-08-07       Impact factor: 15.336

  1 in total

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