Histamine Molecule and Dianion Oxalate are Efficient Blocks for Building 2D Supramolecular Networks |
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Authors: | Adriana Hernández Calva Ana Lilia Padilla Velasco Ángel Mendoza Martínez Aarón Pérez-Benítez Sylvain Bernès Enrique González Vergara |
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Affiliation: | 1.Centro de Química-ICUAP,Benemérita Universidad Autónoma de Puebla,Puebla,Mexico;2.Facultad de Ciencias Químicas,Benemérita Universidad Autónoma de Puebla,Puebla,Mexico;3.DEP, Facultad de Ciencias Químicas,Universidad Autónoma de Nuevo León,Monterrey,Mexico |
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Abstract: | ![]()
Abstract One salt and two Cu(II) complexes (H2hsm)(ox), 1, [Cu(hsm)(ox)], 2, and [Cu(hsm)(ox)H2O], 3, have been synthesized and X-ray characterized (hsm is histamine and ox2− is the oxalate dianion). Starting from the prochiral tetracoordinated complex 2, pentacoordinated complex 3 crystallizes as a racemic mixture of the enantiomeric Δ and Λ isomers, in space group P21/c. In all cases, the side chain of the hsm group is gauche, allowing the formation of strong hydrogen bonds in the salt 1, and to chelate the metal center in complexes 2 and 3. The combination hsm/ox seems to favor the formation of 2D supramolecular structures (planes or wavy planes), through efficient networks of N–H···O hydrogen bonds. Cell parameters: 1, P21/c, a = 6.260 (2) ?, b = 11.500 (4) ?, c = 12.525 (4) ?, β = 104.047 (17)o; 2, C2/c, a = 10.7966 (13) ?, b = 15.5622 (16) ?, c = 11.3996 (15) ?, β = 106.261 (11)o; 3, P21/c, a = 7.0627 (6) ?, b = 7.1323 (6) ?, c = 20.0296 (19) ?, β = 91.529 (7)o. |
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