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A new oxidatively stable ligand for the chiral functionalization of amino acids in Ni(II)-Schiff base complexes. | LitMetric

AI Article Synopsis

  • A new ligand derived from benzylproline, designed to prevent oxidative dimerization, is used to create Ni(II)-Schiff base complexes with amino acids like glycine and serine.
  • The introduction of a bulky -butyl group not only stabilizes the complex but also enhances its stereoselectivity and rigidity compared to the Belokon complex.
  • This modification leads to improved reactivity with electrophiles and increased solubility, making it easier to scale up the process for functionalizing amino acids.

Article Abstract

A new oxidatively stable ()--benzylproline-derived ligand (()--(2-benzoyl-5--butylphenyl)-1-benzylpyrrolidine-2-carboxamide) and its Ni(II)-Schiff base complexes formed of glycine, serine, and dehydroalanine are reported. A bulky -butyl substituent in the phenylene fragment precludes unwanted oxidative dimerization of the Schiff base complex, making it suitable for targeted electrochemically induced oxidative modification of the amino acid side chain. Experimental and DFT studies showed that the additional -butyl group increases the dispersion interactions in the Ni coordination environment making the complexes more conformationally rigid and provides a higher level of thermodynamically controlled stereoselectivity as compared to the parent Belokon complex. Additionally, functionalization with the -butyl group significantly enhances the reactivity of the deprotonated glycine complex towards electrophiles as compared to the anionic species formed from the original Belokon complex. Solubility of the -Bu-containing ligand and its Schiff base complexes is increased, facilitating scaling-up the reaction procedure and isolation of the functionalized amino acid.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10155621PMC
http://dx.doi.org/10.3762/bjoc.19.41DOI Listing

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