2008Crystal Growth & DesignRequires access

Cocrystallization of a Tripyridyl Donor with Perfluorinated Iodobenzene Derivatives: Formation of Different N···I Halogen Bonds Determining Network vs Plain Packing Crystals

Maida Vartanian, A.C.B. Lucassen, Linda J. W. Shimon, Milko E. van der Boom

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Abstract

Two cocrystals ( 4, 5 ) have been obtained with 1,3,5-tris[4-pyridyl(ethenyl)]benzene ( 1 ), sym-triiodo-trifluorobenzene ( 2 ), and diiodo-tetrafluorobenzene ( 3 ), respectively. Cocrystal 4 contains both compounds 1 and 2 in a molecular ratio of 1:2, whereas cocrystal 5 contains both compounds 1 and 3 in a molecular ratio of 1:0.5 and the solvent used for crystallization, namely, chloroform. Both cocrystals ( 4, 5 ) contain N···I halogen bonds with distances of ∼80% of the sum of the van der Waals radii. Compound 1 forms four halogen bonding interactions in cocrystal 4, resulting in an infinite halogen-bonded network with two types of N···I halogen bonds, whereas in cocrystal 5, compound 1 forms only one type of halogen bonding interaction with compound 3 .

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What this paper is about

Two cocrystals ( 4, 5 ) have been obtained with 1,3,5-tris[4-pyridyl(ethenyl)]benzene ( 1 ), sym-triiodo-trifluorobenzene ( 2 ), and diiodo-tetrafluorobenzene ( 3 ), respectively. Cocrystal 4 contains both compounds 1 and 2 in a molecular ratio of 1:2, whereas cocrystal 5 contains both compounds 1 and 3 in a molecular ratio of 1:0.5 and the solvent used for crystallization, namely, chloroform. Both cocrystals ( 4, 5 ) contain N···I halogen bonds with distances of ∼80% of the sum of the van der Waals radii. Compound 1 forms four halogen bonding interactions in cocrystal 4, resulting in an infinite halogen-bonded network with two types of N···I halogen bonds, whereas in cocrystal 5, compound 1 forms only one type of halogen bonding interaction with compound 3 .

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Available abstract

Two cocrystals ( 4, 5 ) have been obtained with 1,3,5-tris[4-pyridyl(ethenyl)]benzene ( 1 ), sym-triiodo-trifluorobenzene ( 2 ), and diiodo-tetrafluorobenzene ( 3 ), respectively. Cocrystal 4 contains both compounds 1 and 2 in a molecular ratio of 1:2, whereas cocrystal 5 contains both compounds 1 and 3 in a molecular ratio of 1:0.5 and the solvent used for crystallization, namely, chloroform. Both cocrystals ( 4, 5 ) contain N···I halogen bonds with distances of ∼80% of the sum of the van der Waals radii. Compound 1 forms four halogen bonding interactions in cocrystal 4, resulting in an infinite halogen-bonded network with two types of N···I halogen bonds, whereas in cocrystal 5, compound 1 forms only one type of halogen bonding interaction with compound 3 .

Key concepts: Cocrystal, Halogen bond, Halogen, Chemistry, Crystallization, van der Waals force, Crystallography, Solvent

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Cocrystallization of a Tripyridyl Donor with Perfluorinated Iodobenzene Derivatives: Formation of Different N···I Halogen Bonds Determining Network vs Plain Packing Crystals — Research Paper | ScholarLens