Abstract

We describe an algorithm for enumerating and classifying molecular interaction motifs in crystal structures taken from the Cambridge Structural Database. It was used to determine which motifs have the highest propensity to occur in structures with Z′ > 1 and to show that these motifs also have a strong tendency to occur between symmetry-independent rather than symmetry-related molecules in such structures. In noncentrosymmetric structures, they are predominately stacking interactions and cyclic motifs containing strong or weak hydrogen bonds. In centrosymmetric structures, OH···O hydrogen bonds and C–H···π interactions predominate. The proportions of centrosymmetric and noncentrosymmetric structures with Z′ = 2 that might be explained by the presence of one or more of these motifs were estimated. Motifs with a strong tendency to form across inversion centers in structures with Z′ = 1 were also identified (“inversion-favoring motifs”). They are similar to those preferentially occurring between symmetry-ind...

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