Scientific Production Faculty

Quantum chemical study of the electrochemical reduction of the [Co(H2O)6]2+ and [Co(NH3)5(H2O)]2+ ions



Mendoza Huizar, Luis Humberto

2001

Quantum chemical study of the electrochemical reduction of the [Co(H2O)(6)](2+) and [Co(NH3)(5)(H2O)](2+) ions. L.H Mendoza-Huizara, M Palomar-Pardavé, Juvencio Robles. http://dx.doi.org/10.1016/S0013-4686(01)00504-7


Abstract


The electrochemical discharges of metallic ions onto the electrode surface require two fundamental steps: the charge transfer reaction and partial or/and total desolvation. Nevertheless, it is still unknown which comes first. A full (molecular) understanding of how these steps occur is still lacking. Since this phenomenon occurs at the molecular and electronic level, we have performed a quantum chemical study for the specific case of Co(II) ions (forming pH-dependent complexes [Co(H2O)6]2+ and [Co(NH3)5(H2O)]2+). We compute the energetics of possible reduction routes for these Co ion complexes, to find out whether the reduction or desolvation takes place first for each complex and to assess the influence of the coordination sphere along the processes. We have performed the electronic structure calculations at the PM3 semiempirical, HartreeFock pseudopotential ab initio and density functional theory levels. Our results, for all calculations, suggest that the coordination sphere may aid in the electron transfer and that charge transfer and reduction before desolvation are energetically more favorable for these complexes.



Research Product




Related articles

Potentiometric behavior of graphite-epoxy electrochemical transducers towards anions, cations and pH...

Chemical Reactivity of Atrazine Employing the Fukui Function

Study of the Humic Acid-Heavy Metal Interactions and Determination of their Stability Constants....

Influence of the Cation Nature of the Sulphate Salt on the Electrochemical Synthesis of Sulfate-Dope...

Review of design variables and operating conditions in electrocoagulation.

Magnetic transition phase diagram of cobalt clusters electrodeposited on HOPG: Experimental and micr...

Do Spiroarsoranes Exhibit Polytopal Equilibrium in Solution?

Cobalt Electrodeposition Process from Electrolytic Baths based on CoSO4 and (NH4)2SO4. Influence of ...

Nucleation and Growth Kinetics of Electrodeposited Sulfate-Doped Polypyrrole: Determination of the D...

Influence of the Crystallinity of the Substrate on Kinetic Parameters of Zinc Electrodeposition Proc...