Abstract :
The reactions of CoCl2 salt and piperazine (L) in the presence of different organic acid mediums afford a series of cobalt(II) complexes, the
solid structures (determined by X-ray diffraction techniques) of which are controlled by the nature of the specific acid. When terephthalic
acid was used, a novel mononuclear molecule [Co(HL)2Cl3]·Cl·(H2O) (1) was obtained [orthorhombic, Pnma, a ¼ 24:604ð16Þ A ° ,
b ¼ 9:882ð7Þ A ° , c ¼ 6:609ð4Þ A ° , Z ¼ 4 ; in which the CoII center takes the unusual compressed trigonal-bipyramidal coordination geometry
(CoN2Cl3) and multiple hydrogen-bonding interactions extend this structure into a three-dimensional supramolecular network. However,
with the replacement of terephthalic acid with malonic acid in the above reaction, a one-dimensional coordination polymer [CoLCl2]n (2)
was obtained [monoclinic, P21=n; a ¼ 6:363ð3Þ A ° , b ¼ 10:244ð5Þ A ° , c ¼ 12:124ð5Þ A ° , b ¼ 103:560ð8Þ8; Z ¼ 4 ; in which the tetrahedral
CoII centers (CoCl2N2) are linked by the bidentate-coordinated piperazine molecules to form a zigzag chain array and these coordination
chains are further expanded to a three-dimensional hydrogen-bonding architecture. In addition, a mononuclear complex [Co(gly)3]·(H2O) (3)
[monoclinic, P21=c; a ¼ 6:261ð5Þ A ° , b ¼ 14:280ð9Þ A ° , c ¼ 12:182ð8Þ A ° , b ¼ 101:450ð14Þ8; Z ¼ 4 was yielded when glycine was used in
the similar procedure. A three-dimensional framework is also observed through the hydrogen-bonding interactions between [Co(gly)3]
moieties, in which the guest water molecules are included. These results unequivocally indicate that the nature of the organic acid templates
play the key role in formation of these complexes.
q 2004 Elsevier B.V. All rights reserved.
Keywords :
crystal structure , Organic acid medium , Hydrogen bond , piperazine , Self-assembly