: Computational crystal engineering approaches to design multicomponent solid forms are a popular means to target experiments that are likely to result in successful outcomes. By utilizing statistics of intermolecular interactions across a large database of experimental crystal structures, Stevens et al. [Acta Cryst. (2026), B82, 391-398] provide a rapid means of identifying key synthons for rational cocrystal design.

Interaction frequencies as a means to design multicomponent forms / Mazzeo, P.P.. - In: ACTA CRYSTALLOGRAPHICA. SECTION B, STRUCTURAL SCIENCE, CRYSTAL ENGINEERING AND MATERIALS. - ISSN 2052-5206. - 82:4(2026), pp. 367-368. [10.1107/S205252062600795X]

Interaction frequencies as a means to design multicomponent forms

Mazzeo P. P.
2026-01-01

Abstract

: Computational crystal engineering approaches to design multicomponent solid forms are a popular means to target experiments that are likely to result in successful outcomes. By utilizing statistics of intermolecular interactions across a large database of experimental crystal structures, Stevens et al. [Acta Cryst. (2026), B82, 391-398] provide a rapid means of identifying key synthons for rational cocrystal design.
2026
Interaction frequencies as a means to design multicomponent forms / Mazzeo, P.P.. - In: ACTA CRYSTALLOGRAPHICA. SECTION B, STRUCTURAL SCIENCE, CRYSTAL ENGINEERING AND MATERIALS. - ISSN 2052-5206. - 82:4(2026), pp. 367-368. [10.1107/S205252062600795X]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/3070600
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