Literature DB >> 26172408

Spectroscopic, thermodynamic, kinetic studies and oxidase/antioxidant biomimetic catalytic activities of tris(3,5-dimethylpyrazolyl)borate Cu(II) complexes.

Shaban Y Shaban1, Abd El-Motaleb M Ramadan, Mohamed M Ibrahim, Mahmoud A Mohamed, Rudi van Eldik.   

Abstract

A series of copper(ii) complexes, viz. [Tp(MeMe)Cu(Cl)(H2O)] (), [Tp(MeMe)Cu(OAc)(H2O)] (), [Tp(MeMe)Cu(NO3)] () and [Tp(MeMe)Cu(ClO4)] () containing tris(3,5-dimethylpyrazolyl)borate (KTp(MeMe)), have been synthesized and fully characterized. The substitution reaction of with thiourea was studied under pseudo-first-order conditions as a function of concentration, temperature and pressure in methanol and acetonitrile as solvents. Two reaction steps that both depended on the nucleophile concentration were observed for both solvents. Substitution of coordinated methanol is about 40 times faster than the substitution of chloride. In acetonitrile, the rate constant for the displacement of coordinated acetonitrile was more than 20 times faster than the substitution of chloride. The reported activation parameters indicate that both reaction steps follow a dissociative mechanism in both solvents. On going from methanol to acetonitrile, the rate constant for the displacement of the solvent becomes more than 200 times faster due to the more labile acetonitrile, but the substitution mechanism remained to have a dissociative character. The antioxidant activities of were evaluated for superoxide dismutase (SOD), glutathione-s-transferase (GST0 and glutathione reduced (GSH-Rd) activity. and were found to show (p < 0.05) the highest antioxidant activity in comparison to and , which can be ascribed to the geometric configuration as well as the nature of the co-ligand. showed catechol oxidase activity with turnover numbers of 20 min(-1) and a coordination affinity for 3,5-DTBC of K1, = 31 mM(-1). K1 is rather large and seems to be typical for faster biomimetic models, and also for the enzyme itself (25 mM(-1)). The reaction rate depended linearly on the complex concentration, indicating a first-order dependence on the catalyst concentration.

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Year:  2015        PMID: 26172408     DOI: 10.1039/c5dt01817j

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  2 in total

1.  New Pyrazole-Hydrazone Derivatives: X-ray Analysis, Molecular Structure Investigation via Density Functional Theory (DFT) and Their High In-Situ Catecholase Activity.

Authors:  Khalid Karrouchi; El Bekkaye Yousfi; Nada Kheira Sebbar; Youssef Ramli; Jamal Taoufik; Younes Ouzidan; M'hammed Ansar; Yahia N Mabkhot; Hazem A Ghabbour; Smaail Radi
Journal:  Int J Mol Sci       Date:  2017-10-25       Impact factor: 5.923

2.  Electrocatalytic hydrogen generation using tripod containing pyrazolylborate-based copper(ii), nickel(ii), and iron(iii) complexes loaded on a glassy carbon electrode.

Authors:  Mohamed M Ibrahim; G A M Mersal; Ahmed M Fallatah; Khaled Althubeiti; Hamdy S El-Sheshtawy; Manal F Abou Taleb; Manash R Das; Rabah Boukherroub; Mohamed S Attia; Mohammed A Amin
Journal:  RSC Adv       Date:  2022-03-11       Impact factor: 3.361

  2 in total

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