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1-Zirconacyclobuta-2,3-dienes: synthesis of organometallic analogs of elusive 1,2-cyclobutadiene, unprecedented intramolecular C–H activation, and reactivity studies

The structure, bonding, and reactivity of small, highly unsaturated ring systems is of fundamental interest for inorganic and organic chemistry. Four-membered metallacyclobuta-2,3-dienes, also referred to as metallacycloallenes, are among the most exotic examples for ring systems as these represent...

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Autores principales: Shi, Xinzhe, Li, Sihan, Reiß, Melanie, Spannenberg, Anke, Holtrichter-Rößmann, Thorsten, Reiß, Fabian, Beweries, Torsten
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8672727/
https://www.ncbi.nlm.nih.gov/pubmed/35024129
http://dx.doi.org/10.1039/d1sc06052j
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author Shi, Xinzhe
Li, Sihan
Reiß, Melanie
Spannenberg, Anke
Holtrichter-Rößmann, Thorsten
Reiß, Fabian
Beweries, Torsten
author_facet Shi, Xinzhe
Li, Sihan
Reiß, Melanie
Spannenberg, Anke
Holtrichter-Rößmann, Thorsten
Reiß, Fabian
Beweries, Torsten
author_sort Shi, Xinzhe
collection PubMed
description The structure, bonding, and reactivity of small, highly unsaturated ring systems is of fundamental interest for inorganic and organic chemistry. Four-membered metallacyclobuta-2,3-dienes, also referred to as metallacycloallenes, are among the most exotic examples for ring systems as these represent organometallic analogs of 1,2-cyclobutadiene, the smallest cyclic allene. Herein, the synthesis of the first examples of 1-zirconacyclobuta-2,3-dienes of the type [Cp′(2)Zr(Me(3)SiC(3)SiMe(3))] (Cp′(2) = rac-(ebthi), (ebthi = 1,2-ethylene-1,1′-bis(η(5)-tetrahydroindenyl)) (2a); rac-Me(2)Si(thi)(2), thi = (η(5)-tetrahydroindenyl), (2b)) is presented. Both complexes undergo selective thermal C–H activation at the 7-position of the ansa-cyclopentadienyl ligand to produce a new type of “tucked-in” zirconocene system, 3a and 3b, that possesses a η(3)-propargyl/allenyl ligand. Both types of complexes react with carbonyl compounds, producing enynes in the case of 2a and 2b, as well as η(1)-allenyl complexes for 3a and 3b. Computational analysis of the structure and bonding of 2a and 3a reveals significant differences to a previously described related Ti complex. All complexes were fully characterised, including X-ray crystallography and experimental results were supported by DFT analysis.
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spelling pubmed-86727272022-01-11 1-Zirconacyclobuta-2,3-dienes: synthesis of organometallic analogs of elusive 1,2-cyclobutadiene, unprecedented intramolecular C–H activation, and reactivity studies Shi, Xinzhe Li, Sihan Reiß, Melanie Spannenberg, Anke Holtrichter-Rößmann, Thorsten Reiß, Fabian Beweries, Torsten Chem Sci Chemistry The structure, bonding, and reactivity of small, highly unsaturated ring systems is of fundamental interest for inorganic and organic chemistry. Four-membered metallacyclobuta-2,3-dienes, also referred to as metallacycloallenes, are among the most exotic examples for ring systems as these represent organometallic analogs of 1,2-cyclobutadiene, the smallest cyclic allene. Herein, the synthesis of the first examples of 1-zirconacyclobuta-2,3-dienes of the type [Cp′(2)Zr(Me(3)SiC(3)SiMe(3))] (Cp′(2) = rac-(ebthi), (ebthi = 1,2-ethylene-1,1′-bis(η(5)-tetrahydroindenyl)) (2a); rac-Me(2)Si(thi)(2), thi = (η(5)-tetrahydroindenyl), (2b)) is presented. Both complexes undergo selective thermal C–H activation at the 7-position of the ansa-cyclopentadienyl ligand to produce a new type of “tucked-in” zirconocene system, 3a and 3b, that possesses a η(3)-propargyl/allenyl ligand. Both types of complexes react with carbonyl compounds, producing enynes in the case of 2a and 2b, as well as η(1)-allenyl complexes for 3a and 3b. Computational analysis of the structure and bonding of 2a and 3a reveals significant differences to a previously described related Ti complex. All complexes were fully characterised, including X-ray crystallography and experimental results were supported by DFT analysis. The Royal Society of Chemistry 2021-11-23 /pmc/articles/PMC8672727/ /pubmed/35024129 http://dx.doi.org/10.1039/d1sc06052j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Shi, Xinzhe
Li, Sihan
Reiß, Melanie
Spannenberg, Anke
Holtrichter-Rößmann, Thorsten
Reiß, Fabian
Beweries, Torsten
1-Zirconacyclobuta-2,3-dienes: synthesis of organometallic analogs of elusive 1,2-cyclobutadiene, unprecedented intramolecular C–H activation, and reactivity studies
title 1-Zirconacyclobuta-2,3-dienes: synthesis of organometallic analogs of elusive 1,2-cyclobutadiene, unprecedented intramolecular C–H activation, and reactivity studies
title_full 1-Zirconacyclobuta-2,3-dienes: synthesis of organometallic analogs of elusive 1,2-cyclobutadiene, unprecedented intramolecular C–H activation, and reactivity studies
title_fullStr 1-Zirconacyclobuta-2,3-dienes: synthesis of organometallic analogs of elusive 1,2-cyclobutadiene, unprecedented intramolecular C–H activation, and reactivity studies
title_full_unstemmed 1-Zirconacyclobuta-2,3-dienes: synthesis of organometallic analogs of elusive 1,2-cyclobutadiene, unprecedented intramolecular C–H activation, and reactivity studies
title_short 1-Zirconacyclobuta-2,3-dienes: synthesis of organometallic analogs of elusive 1,2-cyclobutadiene, unprecedented intramolecular C–H activation, and reactivity studies
title_sort 1-zirconacyclobuta-2,3-dienes: synthesis of organometallic analogs of elusive 1,2-cyclobutadiene, unprecedented intramolecular c–h activation, and reactivity studies
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8672727/
https://www.ncbi.nlm.nih.gov/pubmed/35024129
http://dx.doi.org/10.1039/d1sc06052j
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