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Updated: Feb 20, 2026

A Study of the Complexation of MercuryII with Dicysteinyl Tetrapeptides by Electrospray Ionization Mass Spectrometry
Published on: January 8, 2016
Unusually Strong Cooperative Noncovalent Binding of Elemental Mercury by Protonated Melamine: A Density Functional
1Department of Chemistry, University of Ioannina, University Campus, 45110 Ioannina, Greece.
Abstract:
The noncovalent capture of elemental mercury (Hg0) is challenging due to its closed-shell electronic structure and weak affinity for most molecular hosts. Using density functional theory supported by wave function benchmarks, we examine the interaction of Hg0 with protonated melamine in the gas phase. Protonation is shown to dramatically enhance Hg0 binding, with triprotonated melamine accommodating three Hg0 atoms with average bond dissociation energies exceeding 20 kcal·mol-1 per Hg atom. Additional Hg0 atoms bind above and below the triazine ring through π-associated interactions, giving rise to distinct binding motifs with a reduced level of incremental stabilization. Extensive validation against functional choice, basis set size, dispersion treatment, relativistic effects, and coupled-cluster benchmarks confirms the robustness of these energetic trends. Natural bond orbital, quantum theory of atoms in molecules, and noncovalent interaction analyses consistently indicate that the Hg0-melamine interactions are noncovalent and closed-shell in nature, dominated by cooperative electrostatic and polarization effects rather than covalent bonding. These findings reveal an unusual example of strong, cooperative, noncovalent Hg0 binding enabled by protonation and symmetry.
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