2008 Annual Meeting
(181b) On the Density and Stability of Crystal Structures of Chiral Molecules
In this paper we discuss the stability of racemic compounds from the perspective of molecular packing using an interaction site model of a chiral molecule with hard sphere sites [3]. Over the parameter space of the model we explore the solid phase stability in two ways. We first determine the close packed density for pure enantiomers and racemic compounds using a simulated annealing method that searches the molecular configuration space for density maxima [4]. We supplement these calculations with Monte Carlo simulations to determine the phase diagram [3]. Our results show that for this model racemic compounds are generally denser and more stable than pure enantiomers. In those cases where the pure enantiomers are more dense and stable this is often for model parameters where the chirality is weak. Since both the pure enantiomers and racemic compounds can be prepared for our model we can make an unbiased test of Wallach's rule [5], which states that racemic compounds are always more dense than pure enantiomers.
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5. Brock, C.P., W.B. Schweizer, and J.D. Dunitz, On the Validity of Wallach Rule - on the Density and Stability of Racemic Crystals Compared with Their Chiral Counterparts. Journal of the American Chemical Society, 1991. 113(26): p. 9811-9820.