Cargando…

H/D exchange under mild conditions in arenes and unactivated alkanes with C(6)D(6) and D(2)O using rigid, electron-rich iridium PCP pincer complexes

The synthesis and characterization of an iridium polyhydride complex (Ir-H4) supported by an electron-rich PCP framework is described. This complex readily loses molecular hydrogen allowing for rapid room temperature hydrogen isotope exchange (HIE) at the hydridic positions and the α-C–H site of the...

Descripción completa

Detalles Bibliográficos
Autores principales: Smith, Joel D., Durrant, George, Ess, Daniel H., Gelfand, Benjamin S., Piers, Warren E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162389/
https://www.ncbi.nlm.nih.gov/pubmed/34094323
http://dx.doi.org/10.1039/d0sc02694h
_version_ 1783700702099406848
author Smith, Joel D.
Durrant, George
Ess, Daniel H.
Gelfand, Benjamin S.
Piers, Warren E.
author_facet Smith, Joel D.
Durrant, George
Ess, Daniel H.
Gelfand, Benjamin S.
Piers, Warren E.
author_sort Smith, Joel D.
collection PubMed
description The synthesis and characterization of an iridium polyhydride complex (Ir-H4) supported by an electron-rich PCP framework is described. This complex readily loses molecular hydrogen allowing for rapid room temperature hydrogen isotope exchange (HIE) at the hydridic positions and the α-C–H site of the ligand with deuterated solvents such as benzene-d(6), toluene-d(8) and THF-d(8). The removal of 1–2 equivalents of molecular H(2) forms unsaturated iridium carbene trihydride (Ir-H3) or monohydride (Ir-H) compounds that are able to create further unsaturation by reversibly transferring a hydride to the ligand carbene carbon. These species are highly active hydrogen isotope exchange (HIE) catalysts using C(6)D(6) or D(2)O as deuterium sources for the deuteration of a variety of substrates. By modifying conditions to influence the Ir-Hn speciation, deuteration levels can range from near exhaustive to selective only for sterically accessible sites. Preparative level deuterations of select substrates were performed allowing for procurement of >95% deuterated compounds in excellent isolated yields; the catalyst can be regenerated by treatment of residues with H(2) and is still active for further reactions.
format Online
Article
Text
id pubmed-8162389
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-81623892021-06-04 H/D exchange under mild conditions in arenes and unactivated alkanes with C(6)D(6) and D(2)O using rigid, electron-rich iridium PCP pincer complexes Smith, Joel D. Durrant, George Ess, Daniel H. Gelfand, Benjamin S. Piers, Warren E. Chem Sci Chemistry The synthesis and characterization of an iridium polyhydride complex (Ir-H4) supported by an electron-rich PCP framework is described. This complex readily loses molecular hydrogen allowing for rapid room temperature hydrogen isotope exchange (HIE) at the hydridic positions and the α-C–H site of the ligand with deuterated solvents such as benzene-d(6), toluene-d(8) and THF-d(8). The removal of 1–2 equivalents of molecular H(2) forms unsaturated iridium carbene trihydride (Ir-H3) or monohydride (Ir-H) compounds that are able to create further unsaturation by reversibly transferring a hydride to the ligand carbene carbon. These species are highly active hydrogen isotope exchange (HIE) catalysts using C(6)D(6) or D(2)O as deuterium sources for the deuteration of a variety of substrates. By modifying conditions to influence the Ir-Hn speciation, deuteration levels can range from near exhaustive to selective only for sterically accessible sites. Preparative level deuterations of select substrates were performed allowing for procurement of >95% deuterated compounds in excellent isolated yields; the catalyst can be regenerated by treatment of residues with H(2) and is still active for further reactions. The Royal Society of Chemistry 2020-06-16 /pmc/articles/PMC8162389/ /pubmed/34094323 http://dx.doi.org/10.1039/d0sc02694h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Smith, Joel D.
Durrant, George
Ess, Daniel H.
Gelfand, Benjamin S.
Piers, Warren E.
H/D exchange under mild conditions in arenes and unactivated alkanes with C(6)D(6) and D(2)O using rigid, electron-rich iridium PCP pincer complexes
title H/D exchange under mild conditions in arenes and unactivated alkanes with C(6)D(6) and D(2)O using rigid, electron-rich iridium PCP pincer complexes
title_full H/D exchange under mild conditions in arenes and unactivated alkanes with C(6)D(6) and D(2)O using rigid, electron-rich iridium PCP pincer complexes
title_fullStr H/D exchange under mild conditions in arenes and unactivated alkanes with C(6)D(6) and D(2)O using rigid, electron-rich iridium PCP pincer complexes
title_full_unstemmed H/D exchange under mild conditions in arenes and unactivated alkanes with C(6)D(6) and D(2)O using rigid, electron-rich iridium PCP pincer complexes
title_short H/D exchange under mild conditions in arenes and unactivated alkanes with C(6)D(6) and D(2)O using rigid, electron-rich iridium PCP pincer complexes
title_sort h/d exchange under mild conditions in arenes and unactivated alkanes with c(6)d(6) and d(2)o using rigid, electron-rich iridium pcp pincer complexes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162389/
https://www.ncbi.nlm.nih.gov/pubmed/34094323
http://dx.doi.org/10.1039/d0sc02694h
work_keys_str_mv AT smithjoeld hdexchangeundermildconditionsinarenesandunactivatedalkaneswithc6d6andd2ousingrigidelectronrichiridiumpcppincercomplexes
AT durrantgeorge hdexchangeundermildconditionsinarenesandunactivatedalkaneswithc6d6andd2ousingrigidelectronrichiridiumpcppincercomplexes
AT essdanielh hdexchangeundermildconditionsinarenesandunactivatedalkaneswithc6d6andd2ousingrigidelectronrichiridiumpcppincercomplexes
AT gelfandbenjamins hdexchangeundermildconditionsinarenesandunactivatedalkaneswithc6d6andd2ousingrigidelectronrichiridiumpcppincercomplexes
AT pierswarrene hdexchangeundermildconditionsinarenesandunactivatedalkaneswithc6d6andd2ousingrigidelectronrichiridiumpcppincercomplexes