Skip to content
Open access

Determination of the Formation Constants of Copper(II) Complexes Using Quantum Chemical Calculations

Jul 2026 · Inorganics · Vol 14, pp. 202 · 0 citations · 43 references

Abstract

Gibbs free energy values obtained from quantum-chemical calculations were used to determine the formation constants of homo- and heteroligand copper(II) complexes with various ligands (amino acids, diimines, and phosphorylated dithiocarbamates) in an aqueous medium. A computationally robust, yet moderately expensive, level of theory—B3LYP/def2-TZVPPD—was employed. Solvent effects were accounted for using two models: C-PCM and SMD. A key prerequisite for obtaining reliable results is the use of a reference complex with a known formation constant that is structurally and solvation-wise similar to the compound under study. In this context, “similarity” implies identical stoichiometry, the same coordination number, the same number of water molecules in the inner coordination sphere; matching charges, however, is considerably less critical. The importance of considering conformers and isomers to obtain the most accurate values is demonstrated. The more rigid the structure and the greater the degree of similarity between the studied and reference compounds, the better the agreement between calculated and experimental data; the discrepancy can be as low as 0.1–0.2 logarithmic units. When an appropriate reference is selected, the average deviation of the calculated stability constants is less than 1 logarithmic unit.

Read PDF

Similar papers

Open access Jul 2026

The Enthalpy of Formation of Substituted Phenols and Dihydroxybenzenes for a Group Contribution Method with “Chemical Accuracy”

In this paper we validate Group Contribution (GC) parameters for substituted phenols and dihydroxybenzenes including catechol, resorcinol and hydroquinone with respect to a recently developed Group Contribution method for estimating the heat of formation of organic compounds with chemical accuracy (1 kcal/mol). For the...

Robert J. Meier, P. Rablen · 0 citations
Open access Sep 2026

Comparative computational and thermodynamic study of cation complexation by tetra-O-2-oxopropyl-substituted calix[4]arene atropisomers.

The binding of alkali and alkaline earth metal cations by 1,2-alternate (L12) and 1,3-alternate (L13) conformational isomers of a lower-rim calix[4]arene ketone derivative was investigated in vacuo and in explicit acetonitrile and methanol solvents by means of classical molecular dynamics simulations and quantum chemic...

Matija Modrušan, Jakov Borovec, Andrea Usenik et al. · 0 citations
Aug 2026

Mixed complexes of nickel(II) with amino acids and dicarboxylic acids

A series of novel mixed-ligand coordination compounds of Nickel(II) containing various dicarboxylic acids (oxalic, malonic, succinic, phthalic) and amino acids (glycine, alanine, phenylalanine, histidine) were successfully synthesized and systematically evaluated. Due to the optimization of the reaction parameters, sta...

Gulchehra Zainitdinova, Zokir Karimov, K. Khusenov et al. · 0 citations
Open access Sep 2026

Eutectic and Non‐Eutectic Behavior of Binary Mixtures of Tetrabutylammonium Bromide With Polybasic Carboxylic Acids: Experimental and DFT Study

The structural and electronic properties of 1:1 complexes of tetrabutylammonium bromide (TBAB) with oxalic, adipic, succinic, and citric acids were investigated using density functional theory (DFT) at the B3LYP‐D3/6‐311++G(d,p) level. The molecular electrostatic potential surface analysis was employed to identify...

A. Kazachenko, U. Holikulov, O. Fetisova et al. · 0 citations
Open access Aug 2026

Zn (II) Metal Complexes with Schiff-Bases (Ligand) Synthesis, Characterization and its Biological activity

In this study, metal ions of Zn (II) and Schiff-base ligand have been synthesised using a 2:1 molar ratio (2L:M). To confirm the metal (II) complexes were effectively synthesised, the compound was characterized through PNMR, EDX, Elemental analysis, FTIR, LCMS, magnetic susceptibility measurement, and UV-Vis. The obtai...

Singh Devendra Kumar, Saxena Bipin Bahadur, Singh Vipin Kumar · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.