Electron transfer mechanism for the oxidation of ternary N-(2-Acetamido) iminodiacetatocobaltate (II) complexes involving glycine with benzoyl peroxide

Document Type : Original Article

Authors

1 Chemistry department, Faculty of Science, Beni-Suef University, Beni-Suef, Egypt

2 General Director Of Environmental Projects Development, Beni-Suef University, Beni-Suef City, Egypt

Abstract

The kinetics of oxidation of the Co(II) complexes, [CoII(ADA)(Gly)(H2O)3]- by benzoyl peroxide (BPO) to Co(III) has been studied spectrophotometrically where, [ADA=N-(2-Acetamido imino-diacetato), Gly=Glycinate] over 30-50oC and a variety pH 7.9-8.8 range. The reaction of oxidation of [CoII(ADA)(Gly)(H2O)3]- by benzoyl peroxide was studied under pseudo-order kinetic conditions with respect to complex and it obeys the following rate law:



Rate={(k3+k4[H+])/[H+])+([H+]/(k5+k6[H+])}[CoII(ADA)(Gly)(H2O)3]-[Gly]



In the oxidation of [CoII(ADA)(Gly) (H2O)3]- the rate-determining obeys substitution of one coordinated water molecule by glycinate. The thermodynamic activation parameters have been calculated.

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Volume 65, Issue 132 - Serial Number 13
Special Issue: Chemistry and Global Challenges (Part B)
December 2022
Pages 1449-1455
  • Receive Date: 29 January 2022
  • Revise Date: 23 May 2022
  • Accept Date: 07 June 2022