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Unusual Square Pyramidal Chalcogenide Mo(5) Cluster with Bridging Pyrazolate-Ligands

The family of chalcogenide molybdenum clusters is well presented in the literature by a series of compounds of nuclearity ranging from binuclear to multinuclear articulating octahedral fragments. Clusters actively studied in the last decades were shown to be promising as components of superconductin...

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Autores principales: Savina, Iulia V., Ivanov, Anton A., Evtushok, Darya V., Gayfulin, Yakov M., Komarovskikh, Andrey Y., Syrokvashin, Mikhail M., Ivanova, Mariia N., Asanov, Igor P., Eltsov, Ilia V., Kuratieva, Natalia V., Mironov, Yuri V., Shestopalov, Michael A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9962213/
https://www.ncbi.nlm.nih.gov/pubmed/36834850
http://dx.doi.org/10.3390/ijms24043440
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author Savina, Iulia V.
Ivanov, Anton A.
Evtushok, Darya V.
Gayfulin, Yakov M.
Komarovskikh, Andrey Y.
Syrokvashin, Mikhail M.
Ivanova, Mariia N.
Asanov, Igor P.
Eltsov, Ilia V.
Kuratieva, Natalia V.
Mironov, Yuri V.
Shestopalov, Michael A.
author_facet Savina, Iulia V.
Ivanov, Anton A.
Evtushok, Darya V.
Gayfulin, Yakov M.
Komarovskikh, Andrey Y.
Syrokvashin, Mikhail M.
Ivanova, Mariia N.
Asanov, Igor P.
Eltsov, Ilia V.
Kuratieva, Natalia V.
Mironov, Yuri V.
Shestopalov, Michael A.
author_sort Savina, Iulia V.
collection PubMed
description The family of chalcogenide molybdenum clusters is well presented in the literature by a series of compounds of nuclearity ranging from binuclear to multinuclear articulating octahedral fragments. Clusters actively studied in the last decades were shown to be promising as components of superconducting, magnetic, and catalytic systems. Here, we report the synthesis and detailed characterization of new and unusual representatives of chalcogenide clusters: square pyramidal complexes [{Mo(5)(μ(3)-Se)(i)(4)(μ(4)-Se)(i)(μ-pz)(i)(4)}(pzH)(t)(5)](1+/2+) (pzH = pyrazole, i = inner, t = terminal). Individually obtained oxidized (2+) and reduced (1+) forms have very close geometry (proven by single-crystal X-ray diffraction analysis) and are able to reversibly transform into each other, which was confirmed by cyclic voltammetry. Comprehensive characterization of the complexes, both in solid and in solution, confirms the different charge state of molybdenum in clusters (XPS), magnetic properties (EPR), and so on. DFT calculations complement the diverse study of new complexes, expanding the chemistry of molybdenum chalcogenide clusters.
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spelling pubmed-99622132023-02-26 Unusual Square Pyramidal Chalcogenide Mo(5) Cluster with Bridging Pyrazolate-Ligands Savina, Iulia V. Ivanov, Anton A. Evtushok, Darya V. Gayfulin, Yakov M. Komarovskikh, Andrey Y. Syrokvashin, Mikhail M. Ivanova, Mariia N. Asanov, Igor P. Eltsov, Ilia V. Kuratieva, Natalia V. Mironov, Yuri V. Shestopalov, Michael A. Int J Mol Sci Article The family of chalcogenide molybdenum clusters is well presented in the literature by a series of compounds of nuclearity ranging from binuclear to multinuclear articulating octahedral fragments. Clusters actively studied in the last decades were shown to be promising as components of superconducting, magnetic, and catalytic systems. Here, we report the synthesis and detailed characterization of new and unusual representatives of chalcogenide clusters: square pyramidal complexes [{Mo(5)(μ(3)-Se)(i)(4)(μ(4)-Se)(i)(μ-pz)(i)(4)}(pzH)(t)(5)](1+/2+) (pzH = pyrazole, i = inner, t = terminal). Individually obtained oxidized (2+) and reduced (1+) forms have very close geometry (proven by single-crystal X-ray diffraction analysis) and are able to reversibly transform into each other, which was confirmed by cyclic voltammetry. Comprehensive characterization of the complexes, both in solid and in solution, confirms the different charge state of molybdenum in clusters (XPS), magnetic properties (EPR), and so on. DFT calculations complement the diverse study of new complexes, expanding the chemistry of molybdenum chalcogenide clusters. MDPI 2023-02-08 /pmc/articles/PMC9962213/ /pubmed/36834850 http://dx.doi.org/10.3390/ijms24043440 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Savina, Iulia V.
Ivanov, Anton A.
Evtushok, Darya V.
Gayfulin, Yakov M.
Komarovskikh, Andrey Y.
Syrokvashin, Mikhail M.
Ivanova, Mariia N.
Asanov, Igor P.
Eltsov, Ilia V.
Kuratieva, Natalia V.
Mironov, Yuri V.
Shestopalov, Michael A.
Unusual Square Pyramidal Chalcogenide Mo(5) Cluster with Bridging Pyrazolate-Ligands
title Unusual Square Pyramidal Chalcogenide Mo(5) Cluster with Bridging Pyrazolate-Ligands
title_full Unusual Square Pyramidal Chalcogenide Mo(5) Cluster with Bridging Pyrazolate-Ligands
title_fullStr Unusual Square Pyramidal Chalcogenide Mo(5) Cluster with Bridging Pyrazolate-Ligands
title_full_unstemmed Unusual Square Pyramidal Chalcogenide Mo(5) Cluster with Bridging Pyrazolate-Ligands
title_short Unusual Square Pyramidal Chalcogenide Mo(5) Cluster with Bridging Pyrazolate-Ligands
title_sort unusual square pyramidal chalcogenide mo(5) cluster with bridging pyrazolate-ligands
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9962213/
https://www.ncbi.nlm.nih.gov/pubmed/36834850
http://dx.doi.org/10.3390/ijms24043440
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