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Experimental and computational preference for phosphine regioselectivity and stereoselective tripodal rotation in HOs(3)(CO)(8)(PPh(3))(2)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS)
The site preference for ligand substitution in the benzothiazolate-bridged cluster HOs(3)(CO)(10)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) (1) has been investigated using PPh(3). 1 reacts with PPh(3) in the presence of Me(3)NO to afford the mono- and bisphosphine substituted clusters HOs(3)(CO)(9)(PPh(3))(μ-...
Autores principales: | , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society of Chemistry
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9086258/ https://www.ncbi.nlm.nih.gov/pubmed/35547690 http://dx.doi.org/10.1039/c8ra07400c |
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author | Begum, Shahin A. Chowdhury, Md. Arshad H. Ghosh, Shishir Tocher, Derek A. Richmond, Michael G. Yang, Li Hardcastle, K. I. Rosenberg, Edward Kabir, Shariff E. |
author_facet | Begum, Shahin A. Chowdhury, Md. Arshad H. Ghosh, Shishir Tocher, Derek A. Richmond, Michael G. Yang, Li Hardcastle, K. I. Rosenberg, Edward Kabir, Shariff E. |
author_sort | Begum, Shahin A. |
collection | PubMed |
description | The site preference for ligand substitution in the benzothiazolate-bridged cluster HOs(3)(CO)(10)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) (1) has been investigated using PPh(3). 1 reacts with PPh(3) in the presence of Me(3)NO to afford the mono- and bisphosphine substituted clusters HOs(3)(CO)(9)(PPh(3))(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) (2) and HOs(3)(CO)(8)(PPh(3))(2)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) (3), respectively. 2 exists as a pair of non-interconverting isomers where the PPh(3) ligand is situated at one of the equatorial sites syn to the edge-bridging hydride that shares a common Os–Os bond with the metalated heterocycle. The solid-state structure of the major isomer establishes the PPh(3) regiochemistry at the N-substituted osmium center. DFT calculations confirm the thermodynamic preference for this particular isomer relative to the minor isomer whose phosphine ligand is located at the adjacent C-metalated osmium center. 2 also reacts with PPh(3) to give 3. The locus of the second substitution occurs at one of the two equatorial sites at the Os(CO)(4) moiety in 2 and gives rise to a pair of fluxional stereoisomers where the new phosphine ligand is scrambled between the two equatorial sites at the Os(CO)(3)P moiety. The molecular structure of the major isomer has been determined by X-ray diffraction analysis and found to represent the lowest energy structure of the different stereoisomers computed for HOs(3)(CO)(8)(PPh(3))(2)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS). The fluxional behavior displayed by 3 has been examined by VT NMR spectroscopy, and DFT calculations provide evidence for stereoselective tripodal rotation at the Os(CO)(3)P moiety that serves to equilibrate the second phosphine between the two available equatorial sites. |
format | Online Article Text |
id | pubmed-9086258 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-90862582022-05-10 Experimental and computational preference for phosphine regioselectivity and stereoselective tripodal rotation in HOs(3)(CO)(8)(PPh(3))(2)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) Begum, Shahin A. Chowdhury, Md. Arshad H. Ghosh, Shishir Tocher, Derek A. Richmond, Michael G. Yang, Li Hardcastle, K. I. Rosenberg, Edward Kabir, Shariff E. RSC Adv Chemistry The site preference for ligand substitution in the benzothiazolate-bridged cluster HOs(3)(CO)(10)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) (1) has been investigated using PPh(3). 1 reacts with PPh(3) in the presence of Me(3)NO to afford the mono- and bisphosphine substituted clusters HOs(3)(CO)(9)(PPh(3))(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) (2) and HOs(3)(CO)(8)(PPh(3))(2)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) (3), respectively. 2 exists as a pair of non-interconverting isomers where the PPh(3) ligand is situated at one of the equatorial sites syn to the edge-bridging hydride that shares a common Os–Os bond with the metalated heterocycle. The solid-state structure of the major isomer establishes the PPh(3) regiochemistry at the N-substituted osmium center. DFT calculations confirm the thermodynamic preference for this particular isomer relative to the minor isomer whose phosphine ligand is located at the adjacent C-metalated osmium center. 2 also reacts with PPh(3) to give 3. The locus of the second substitution occurs at one of the two equatorial sites at the Os(CO)(4) moiety in 2 and gives rise to a pair of fluxional stereoisomers where the new phosphine ligand is scrambled between the two equatorial sites at the Os(CO)(3)P moiety. The molecular structure of the major isomer has been determined by X-ray diffraction analysis and found to represent the lowest energy structure of the different stereoisomers computed for HOs(3)(CO)(8)(PPh(3))(2)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS). The fluxional behavior displayed by 3 has been examined by VT NMR spectroscopy, and DFT calculations provide evidence for stereoselective tripodal rotation at the Os(CO)(3)P moiety that serves to equilibrate the second phosphine between the two available equatorial sites. The Royal Society of Chemistry 2018-09-21 /pmc/articles/PMC9086258/ /pubmed/35547690 http://dx.doi.org/10.1039/c8ra07400c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Begum, Shahin A. Chowdhury, Md. Arshad H. Ghosh, Shishir Tocher, Derek A. Richmond, Michael G. Yang, Li Hardcastle, K. I. Rosenberg, Edward Kabir, Shariff E. Experimental and computational preference for phosphine regioselectivity and stereoselective tripodal rotation in HOs(3)(CO)(8)(PPh(3))(2)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) |
title | Experimental and computational preference for phosphine regioselectivity and stereoselective tripodal rotation in HOs(3)(CO)(8)(PPh(3))(2)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) |
title_full | Experimental and computational preference for phosphine regioselectivity and stereoselective tripodal rotation in HOs(3)(CO)(8)(PPh(3))(2)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) |
title_fullStr | Experimental and computational preference for phosphine regioselectivity and stereoselective tripodal rotation in HOs(3)(CO)(8)(PPh(3))(2)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) |
title_full_unstemmed | Experimental and computational preference for phosphine regioselectivity and stereoselective tripodal rotation in HOs(3)(CO)(8)(PPh(3))(2)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) |
title_short | Experimental and computational preference for phosphine regioselectivity and stereoselective tripodal rotation in HOs(3)(CO)(8)(PPh(3))(2)(μ-1,2-N,C-η(1),κ(1)-C(7)H(4)NS) |
title_sort | experimental and computational preference for phosphine regioselectivity and stereoselective tripodal rotation in hos(3)(co)(8)(pph(3))(2)(μ-1,2-n,c-η(1),κ(1)-c(7)h(4)ns) |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9086258/ https://www.ncbi.nlm.nih.gov/pubmed/35547690 http://dx.doi.org/10.1039/c8ra07400c |
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