Reconstructing a polyoxometalate decorated with zinc(II) complexes through a directional interactions approach

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Poster Presentation
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Abstract

Hybrid polyoxometalate–metalorganic complexes have applications in catalysis, electronics, and biomedicine. The decavanadate (V10) anion forms hybrid assemblies with transition-metal complexes through electrostatic and/or coordination interactions. However, the role of these interactions in driving the formation of V10-based hybrids remains poorly understood. Herein, the hybrid complex [Zn(en)2]3[V10O28]·5H2O, where en = C2H8N2, containing two distinct zinc(II) coordination centers, was investigated using a theoretical approach aiming to elucidate the key interactions involved in its formation and stabilization. Zn(en)2–OH₂ bonds and Zn(en)2–O(V10) contacts were compared, showing a greater stabilization of the Zn–V10 assemblies, demonstrating that cooperative non-covalent contributions, particularly σ-hole interactions and hydrogen bonding, play a key role in the formation and stabilization of the hybrid structure, beyond the local covalent character of the metal–oxygen bond.

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Institutions
  • 1 Universidade Federal do Paraná / Departamento de Química
  • 2 Departamento de Química (DQ) / Programa de Pós-Graduação em Química / Universidade Federal do Paraná
  • 3 ufpr
Track
  • TL05 - Theoretical and Computational Inorganic Chemistry
Keywords
Polyoxometalates
Interaction
DFT