Cargando…
Structural Basis for Regioisomerization in the Alkali-Metal-Mediated Zincation (AMMZn) of Trifluoromethyl Benzene by Isolation of Kinetic and Thermodynamic Intermediates
[Image: see text] Performed with a desire to advance knowledge of the structures and mechanisms governing alkali-metal-mediated zincation, this study monitors the reaction between the TMP-dialkylzincate reagent [(TMEDA)Na(TMP)((t)Bu)Zn((t)Bu)] 1 and trifluoromethyl benzene C(6)H(5)CF(3)2. A complica...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2010
|
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3660950/ https://www.ncbi.nlm.nih.gov/pubmed/20568749 http://dx.doi.org/10.1021/ja1038598 |
_version_ | 1782270617390678016 |
---|---|
author | Armstrong, David R. Blair, Victoria L. Clegg, William Dale, Sophie H. Garcia-Alvarez, Joaquin Honeyman, Gordon W. Hevia, Eva Mulvey, Robert E. Russo, Luca |
author_facet | Armstrong, David R. Blair, Victoria L. Clegg, William Dale, Sophie H. Garcia-Alvarez, Joaquin Honeyman, Gordon W. Hevia, Eva Mulvey, Robert E. Russo, Luca |
author_sort | Armstrong, David R. |
collection | PubMed |
description | [Image: see text] Performed with a desire to advance knowledge of the structures and mechanisms governing alkali-metal-mediated zincation, this study monitors the reaction between the TMP-dialkylzincate reagent [(TMEDA)Na(TMP)((t)Bu)Zn((t)Bu)] 1 and trifluoromethyl benzene C(6)H(5)CF(3)2. A complicated mixture of products is observed at room temperature. X-ray crystallography has identified two of these products as ortho- and meta-regioisomers of heterotrianionic [(TMEDA)Na(TMP)(C(6)H(4)-CF(3))Zn((t)Bu)], 3-ortho and 3-meta, respectively. Multinuclear NMR data of the bulk crystalline product confirm the presence of these two regioisomers as well as a third isomer, 3-para, in a respective ratio of 20:11:1, and an additional product 4, which also exhibits ortho-zincation of the aryl substrate. Repeating the reaction at 0 °C gave exclusively 4, which was crystallographically characterized as [{(TMEDA)(2)Na}(+){Zn(C(6)H(4)-CF(3))((t)Bu)(2)}(−)]. Mimicking the original room-temperature reaction, this kinetic product was subsequently reacted with TMP(H) to afford a complicated mixture of products, including significantly the three regioisomers of 3. Surprisingly, 4 adopts a solvent-separated ion pair arrangement in contrast to the contacted ion variants of 3-ortho and 3-meta. Aided by DFT calculations on model systems, discussion focuses on the different basicities, amido or alkyl, and steps, exhibited in these reactions, and how the structures and bonding within these isolated key metallic intermediates (prior to any electrophilic interception step), specifically the interactions involving the alkali metal, influence the regioselectivity of the Zn−H exchange process. |
format | Online Article Text |
id | pubmed-3660950 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2010 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-36609502013-05-22 Structural Basis for Regioisomerization in the Alkali-Metal-Mediated Zincation (AMMZn) of Trifluoromethyl Benzene by Isolation of Kinetic and Thermodynamic Intermediates Armstrong, David R. Blair, Victoria L. Clegg, William Dale, Sophie H. Garcia-Alvarez, Joaquin Honeyman, Gordon W. Hevia, Eva Mulvey, Robert E. Russo, Luca J Am Chem Soc [Image: see text] Performed with a desire to advance knowledge of the structures and mechanisms governing alkali-metal-mediated zincation, this study monitors the reaction between the TMP-dialkylzincate reagent [(TMEDA)Na(TMP)((t)Bu)Zn((t)Bu)] 1 and trifluoromethyl benzene C(6)H(5)CF(3)2. A complicated mixture of products is observed at room temperature. X-ray crystallography has identified two of these products as ortho- and meta-regioisomers of heterotrianionic [(TMEDA)Na(TMP)(C(6)H(4)-CF(3))Zn((t)Bu)], 3-ortho and 3-meta, respectively. Multinuclear NMR data of the bulk crystalline product confirm the presence of these two regioisomers as well as a third isomer, 3-para, in a respective ratio of 20:11:1, and an additional product 4, which also exhibits ortho-zincation of the aryl substrate. Repeating the reaction at 0 °C gave exclusively 4, which was crystallographically characterized as [{(TMEDA)(2)Na}(+){Zn(C(6)H(4)-CF(3))((t)Bu)(2)}(−)]. Mimicking the original room-temperature reaction, this kinetic product was subsequently reacted with TMP(H) to afford a complicated mixture of products, including significantly the three regioisomers of 3. Surprisingly, 4 adopts a solvent-separated ion pair arrangement in contrast to the contacted ion variants of 3-ortho and 3-meta. Aided by DFT calculations on model systems, discussion focuses on the different basicities, amido or alkyl, and steps, exhibited in these reactions, and how the structures and bonding within these isolated key metallic intermediates (prior to any electrophilic interception step), specifically the interactions involving the alkali metal, influence the regioselectivity of the Zn−H exchange process. American Chemical Society 2010-06-22 2010-07-14 /pmc/articles/PMC3660950/ /pubmed/20568749 http://dx.doi.org/10.1021/ja1038598 Text en Copyright © 2010 American Chemical Society |
spellingShingle | Armstrong, David R. Blair, Victoria L. Clegg, William Dale, Sophie H. Garcia-Alvarez, Joaquin Honeyman, Gordon W. Hevia, Eva Mulvey, Robert E. Russo, Luca Structural Basis for Regioisomerization in the Alkali-Metal-Mediated Zincation (AMMZn) of Trifluoromethyl Benzene by Isolation of Kinetic and Thermodynamic Intermediates |
title | Structural Basis for Regioisomerization in the Alkali-Metal-Mediated Zincation (AMMZn) of Trifluoromethyl Benzene by Isolation of Kinetic and Thermodynamic Intermediates |
title_full | Structural Basis for Regioisomerization in the Alkali-Metal-Mediated Zincation (AMMZn) of Trifluoromethyl Benzene by Isolation of Kinetic and Thermodynamic Intermediates |
title_fullStr | Structural Basis for Regioisomerization in the Alkali-Metal-Mediated Zincation (AMMZn) of Trifluoromethyl Benzene by Isolation of Kinetic and Thermodynamic Intermediates |
title_full_unstemmed | Structural Basis for Regioisomerization in the Alkali-Metal-Mediated Zincation (AMMZn) of Trifluoromethyl Benzene by Isolation of Kinetic and Thermodynamic Intermediates |
title_short | Structural Basis for Regioisomerization in the Alkali-Metal-Mediated Zincation (AMMZn) of Trifluoromethyl Benzene by Isolation of Kinetic and Thermodynamic Intermediates |
title_sort | structural basis for regioisomerization in the alkali-metal-mediated zincation (ammzn) of trifluoromethyl benzene by isolation of kinetic and thermodynamic intermediates |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3660950/ https://www.ncbi.nlm.nih.gov/pubmed/20568749 http://dx.doi.org/10.1021/ja1038598 |
work_keys_str_mv | AT armstrongdavidr structuralbasisforregioisomerizationinthealkalimetalmediatedzincationammznoftrifluoromethylbenzenebyisolationofkineticandthermodynamicintermediates AT blairvictorial structuralbasisforregioisomerizationinthealkalimetalmediatedzincationammznoftrifluoromethylbenzenebyisolationofkineticandthermodynamicintermediates AT cleggwilliam structuralbasisforregioisomerizationinthealkalimetalmediatedzincationammznoftrifluoromethylbenzenebyisolationofkineticandthermodynamicintermediates AT dalesophieh structuralbasisforregioisomerizationinthealkalimetalmediatedzincationammznoftrifluoromethylbenzenebyisolationofkineticandthermodynamicintermediates AT garciaalvarezjoaquin structuralbasisforregioisomerizationinthealkalimetalmediatedzincationammznoftrifluoromethylbenzenebyisolationofkineticandthermodynamicintermediates AT honeymangordonw structuralbasisforregioisomerizationinthealkalimetalmediatedzincationammznoftrifluoromethylbenzenebyisolationofkineticandthermodynamicintermediates AT heviaeva structuralbasisforregioisomerizationinthealkalimetalmediatedzincationammznoftrifluoromethylbenzenebyisolationofkineticandthermodynamicintermediates AT mulveyroberte structuralbasisforregioisomerizationinthealkalimetalmediatedzincationammznoftrifluoromethylbenzenebyisolationofkineticandthermodynamicintermediates AT russoluca structuralbasisforregioisomerizationinthealkalimetalmediatedzincationammznoftrifluoromethylbenzenebyisolationofkineticandthermodynamicintermediates |