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Diferrocenyl Thioketone: Reactions with (Bisphosphane)Pt(0) Complexes—Electrochemical and Computational Studies

Diferrocenyl thioketone reacts smoothly with (bisphosphane)Pt(0) complexes in toluene solution at room temperature yielding 1:1 adducts identified as ferrocenyl (Fc) functionalized platinathiiranes. Their structures were unambiguously confirmed by means of spectroscopic methods as well as by X-ray d...

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Autores principales: Gröber, Sebastian, Matczak, Piotr, Domagała, Sławomir, Weisheit, Thomas, Görls, Helmar, Düver, Annika, Mlostoń, Grzegorz, Weigand, Wolfgang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6747965/
https://www.ncbi.nlm.nih.gov/pubmed/31484359
http://dx.doi.org/10.3390/ma12172832
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author Gröber, Sebastian
Matczak, Piotr
Domagała, Sławomir
Weisheit, Thomas
Görls, Helmar
Düver, Annika
Mlostoń, Grzegorz
Weigand, Wolfgang
author_facet Gröber, Sebastian
Matczak, Piotr
Domagała, Sławomir
Weisheit, Thomas
Görls, Helmar
Düver, Annika
Mlostoń, Grzegorz
Weigand, Wolfgang
author_sort Gröber, Sebastian
collection PubMed
description Diferrocenyl thioketone reacts smoothly with (bisphosphane)Pt(0) complexes in toluene solution at room temperature yielding 1:1 adducts identified as ferrocenyl (Fc) functionalized platinathiiranes. Their structures were unambiguously confirmed by means of spectroscopic methods as well as by X-ray diffraction analysis. A unique, ferrocene-rich platinathiirane, bearing three Fc-units, was prepared starting with [bis(diphenylphosphino)ferrocene] Pt(0(η(2)-norbornene). For comparison, a similar platinathiirane with one Fc-unit was obtained from the reaction of the latter complex with thiobenzophenone. Quantum-chemical calculations were carried out to describe the bonding pattern and frontier molecular orbitals of the ferrocene-rich platinathiirane complexes. These calculations confirmed that the C=S bond loses its formally double-bond character upon complexation (bisphosphane)Pt(0). Cyclic voltammetry measurements were performed to characterize the obtained platinathiiranes in CH(2)Cl(2) solutions. For comparison, the cyclic voltammogram for diferrocenyl thioketoneas a mixed-valent (Fe(II)-Fe(III)) compound was also recorded and analyzed. The results point out to a diffusion controlled electrode process in case of differocenyl thioketone and mixed diffusion and adsorption controlled electrode process in the case of the studied platinathiiranes.
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spelling pubmed-67479652019-09-27 Diferrocenyl Thioketone: Reactions with (Bisphosphane)Pt(0) Complexes—Electrochemical and Computational Studies Gröber, Sebastian Matczak, Piotr Domagała, Sławomir Weisheit, Thomas Görls, Helmar Düver, Annika Mlostoń, Grzegorz Weigand, Wolfgang Materials (Basel) Article Diferrocenyl thioketone reacts smoothly with (bisphosphane)Pt(0) complexes in toluene solution at room temperature yielding 1:1 adducts identified as ferrocenyl (Fc) functionalized platinathiiranes. Their structures were unambiguously confirmed by means of spectroscopic methods as well as by X-ray diffraction analysis. A unique, ferrocene-rich platinathiirane, bearing three Fc-units, was prepared starting with [bis(diphenylphosphino)ferrocene] Pt(0(η(2)-norbornene). For comparison, a similar platinathiirane with one Fc-unit was obtained from the reaction of the latter complex with thiobenzophenone. Quantum-chemical calculations were carried out to describe the bonding pattern and frontier molecular orbitals of the ferrocene-rich platinathiirane complexes. These calculations confirmed that the C=S bond loses its formally double-bond character upon complexation (bisphosphane)Pt(0). Cyclic voltammetry measurements were performed to characterize the obtained platinathiiranes in CH(2)Cl(2) solutions. For comparison, the cyclic voltammogram for diferrocenyl thioketoneas a mixed-valent (Fe(II)-Fe(III)) compound was also recorded and analyzed. The results point out to a diffusion controlled electrode process in case of differocenyl thioketone and mixed diffusion and adsorption controlled electrode process in the case of the studied platinathiiranes. MDPI 2019-09-03 /pmc/articles/PMC6747965/ /pubmed/31484359 http://dx.doi.org/10.3390/ma12172832 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gröber, Sebastian
Matczak, Piotr
Domagała, Sławomir
Weisheit, Thomas
Görls, Helmar
Düver, Annika
Mlostoń, Grzegorz
Weigand, Wolfgang
Diferrocenyl Thioketone: Reactions with (Bisphosphane)Pt(0) Complexes—Electrochemical and Computational Studies
title Diferrocenyl Thioketone: Reactions with (Bisphosphane)Pt(0) Complexes—Electrochemical and Computational Studies
title_full Diferrocenyl Thioketone: Reactions with (Bisphosphane)Pt(0) Complexes—Electrochemical and Computational Studies
title_fullStr Diferrocenyl Thioketone: Reactions with (Bisphosphane)Pt(0) Complexes—Electrochemical and Computational Studies
title_full_unstemmed Diferrocenyl Thioketone: Reactions with (Bisphosphane)Pt(0) Complexes—Electrochemical and Computational Studies
title_short Diferrocenyl Thioketone: Reactions with (Bisphosphane)Pt(0) Complexes—Electrochemical and Computational Studies
title_sort diferrocenyl thioketone: reactions with (bisphosphane)pt(0) complexes—electrochemical and computational studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6747965/
https://www.ncbi.nlm.nih.gov/pubmed/31484359
http://dx.doi.org/10.3390/ma12172832
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