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Optically active 4- and 5-coordinate transition metal complexes of bifurcated dipeptide Schiff bases.

作者信息

Polt Robin, Kelly Brian D, Dangel Brian D, Tadikonda Udaya Bhaskar, Ross Regina E, Raitsimring Arnold M, Astashkin Andrei V

机构信息

Department of Chemistry, University of Arizona, Tucson, Arizona 85721, USA.

出版信息

Inorg Chem. 2003 Jan 27;42(2):566-74. doi: 10.1021/ic025996o.

DOI:10.1021/ic025996o
PMID:12693240
Abstract

Symmetrical and unsymmetrical benzophenone Schiff bases of bifurcated dipeptides [e.g., Ar2C=N-CHR1- CONH-HNCO-CHR2-N=CAr2] have been synthesized using Boc methodology. These ligands may be regarded as chiral porphyrin mimics because of the alpha-carbons of the amino acids. The Schiff bases function as effective ligands for transition metals, particularly the late transition metals Ni(II), Cu(II), and Zn. Upon metal insertion, there is loss of the amide protons, resulting in N4 chelating ligands that retain the amino acid based chirality as well as newly generated metal-centered chirality, which for the Ni(II) complexes have been shown by X-ray analysis to be lambda (left-handed helix) if the amino acids are S. For Ni(II) and Cu(II), metal insertion results in highly colored complexes and is easily followed by UV-vis spectrophotometry. Several Ni(II) complexes were also characterized by 1H NMR. Co(II) and Mn(II) complexes were characterized by CW EPR. Two Cu(II) complexes, 7f.CuII and 7k.CuII, were characterized by EPR (ENDOR and ESEEM), which clearly showed the pentacoordinate nature of 7k.CuII.

摘要

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