Exploitation of the menshutkin reaction for the controlled assembly of halogen bonded architectures incorporating 1,2-diiodotetrafluorobenzene and 1,3,5-Triiodotrifluorobenzene


Autoria(s): Pfrunder, Michael; Micallef, Aaron; Rintoul, Llew; Arnold, Dennis; Davy, Karl; McMurtrie, John
Data(s)

2012

Resumo

1,4-Diazabicyclo[2.2.2]octane (DABCO) forms well-defined co-crystals with 1,2-diiodotetrafluorobenzene (1,2-DITFB), [(1,2-DITFB)2DABCO], and 1,3,5-triiodotrifluorobenzene, [(1,3,5-TITFB)2DABCO]. Both systems exhibited lower-than-expected supramolecular connectivity, which inspired a search for polymorphs in alternative crystallization solvents. In dichloromethane solution, the Menshutkin reaction was found to occur, generating chloride anions and quaternary ammonium cations through the reaction between the solvent and DABCO. The controlled in situ production of chloride ions facilitated the crystallization of new halogen bonded networks, DABCO–CH2Cl[(1,2-DITFB)Cl] (zigzag X-bonded chains) and (DABCO–CH2Cl)3[(1,3,5-TITFB)2Cl3]·CHCl3 (2D pseudo-trigonal X-bonded nets displaying Borremean entanglement), propagating with charge-assisted C–I···Cl– halogen bonds. The method was found to be versatile, and substitution of DABCO with triethylamine (TEA) gave (TEA-CH2Cl)3[(1,2-DITFB)Cl3]·4(H2O) (mixed halogen bond hydrogen bond network with 2D supramolecular connectivity) and TEA-CH2Cl[(1,3,5-TITFB)Cl] (tightly packed planar trigonal nets). The co-crystals were typically produced in high yield and purity with relatively predictable supramolecular topology, particularly with respect to the connectivity of the iodobenzene molecules. The potential to use this synthetic methodology for crystal engineering of halogen bonded architectures is demonstrated and discussed.

Identificador

http://eprints.qut.edu.au/77249/

Publicador

American Chemical Society

Relação

DOI:10.1021/cg201017r

Pfrunder, Michael, Micallef, Aaron, Rintoul, Llew, Arnold, Dennis, Davy, Karl, & McMurtrie, John (2012) Exploitation of the menshutkin reaction for the controlled assembly of halogen bonded architectures incorporating 1,2-diiodotetrafluorobenzene and 1,3,5-Triiodotrifluorobenzene. Crystal Growth and Design, 12(2), pp. 714-724.

Fonte

Chemistry; Faculty of Science and Technology; Science & Engineering Faculty

Palavras-Chave #030200 INORGANIC CHEMISTRY #030600 PHYSICAL CHEMISTRY (INCL. STRUCTURAL) #091200 MATERIALS ENGINEERING
Tipo

Journal Article