Görbitz Carl Henrik, Vestli Kristian, Orlando Roberto
Department of Chemistry, University of Oslo, Norway.
Acta Crystallogr B. 2009 Jun;65(Pt 3):393-400. doi: 10.1107/S0108768109014700. Epub 2009 May 19.
Chiral amino acids without functional groups in their side chains (hydrophobic amino acids) systematically form crystals with two molecules in the asymmetric unit. In contrast, racemates of the same compounds form crystals with Z' = 1. The present investigation addresses the origin of this important difference between enantiomeric and racemic crystals. Through a series of ab initio calculations on infinite two-dimensional slabs, derived from crystal structures, as well as calculations on full crystal structures it is shown that it is indeed possible to explain the observed behaviour. Additionally, the (not unexpected) observation that amino acids usually form racemates in the solid phase rather than undergoing racemic separation upon crystallization is rationalized on the basis of energy calculations.
侧链中没有官能团的手性氨基酸(疏水氨基酸)系统地形成不对称单元中有两个分子的晶体。相比之下,相同化合物的外消旋体形成Z' = 1的晶体。本研究探讨了对映体晶体和外消旋体晶体之间这一重要差异的起源。通过对源自晶体结构的无限二维平板进行一系列从头算计算,以及对完整晶体结构进行计算,结果表明确实有可能解释观察到的行为。此外,基于能量计算,对氨基酸通常在固相中形成外消旋体而不是在结晶时进行外消旋分离这一(并不意外的)观察结果进行了合理化解释。