Comparison of Iridium(I) Catalysts in Temperature Mediated Hydrogen Isotope Exchange Reactions

Abstract The reactivity and selectivity of iridium(I) catalysed hydrogen isotope exchange (HIE) reactions can be varied by using wide range of reaction temperatures. Herein, we have done a detailed comparison study with common iridium(I) catalysts (1–6) which will help us to understand and optimize...

Full description

Bibliographic Details
Main Authors: Mégane Valero, Dr. Anurag Mishra, Jennifer Blass, Remo Weck, Dr. Volker Derdau
Format: Article
Language:English
Published: Wiley-VCH 2019-09-01
Series:ChemistryOpen
Subjects:
Online Access:https://doi.org/10.1002/open.201900204
id doaj-fd45a41c3a814e2fa5d3bd8e67631e5d
record_format Article
spelling doaj-fd45a41c3a814e2fa5d3bd8e67631e5d2021-03-02T00:31:27ZengWiley-VCHChemistryOpen2191-13632019-09-01891183118910.1002/open.201900204Comparison of Iridium(I) Catalysts in Temperature Mediated Hydrogen Isotope Exchange ReactionsMégane Valero0Dr. Anurag Mishra1Jennifer Blass2Remo Weck3Dr. Volker Derdau4Sanofi-Aventis Deutschland GmbH, Integrated Drug Discovery, Isotope Chemistry Industriepark Höchst Frankfurt GermanySanofi-Aventis Deutschland GmbH, Integrated Drug Discovery, Isotope Chemistry Industriepark Höchst Frankfurt GermanySanofi-Aventis Deutschland GmbH, Integrated Drug Discovery, Isotope Chemistry Industriepark Höchst Frankfurt GermanySanofi-Aventis Deutschland GmbH, Integrated Drug Discovery, Isotope Chemistry Industriepark Höchst Frankfurt GermanySanofi-Aventis Deutschland GmbH, Integrated Drug Discovery, Isotope Chemistry Industriepark Höchst Frankfurt GermanyAbstract The reactivity and selectivity of iridium(I) catalysed hydrogen isotope exchange (HIE) reactions can be varied by using wide range of reaction temperatures. Herein, we have done a detailed comparison study with common iridium(I) catalysts (1–6) which will help us to understand and optimize the approaches of either high selectivity or maximum deuterium incorporation. We have demonstrated that the temperature window for these studied iridium(I) catalysts is surprisingly very broad. This principle was further proven in some HIE reactions on complex drug molecules.https://doi.org/10.1002/open.201900204hydrogen isotope exchangedeuteriumiridium catalysisC−H functionalizationhomogeneous catalysis
collection DOAJ
language English
format Article
sources DOAJ
author Mégane Valero
Dr. Anurag Mishra
Jennifer Blass
Remo Weck
Dr. Volker Derdau
spellingShingle Mégane Valero
Dr. Anurag Mishra
Jennifer Blass
Remo Weck
Dr. Volker Derdau
Comparison of Iridium(I) Catalysts in Temperature Mediated Hydrogen Isotope Exchange Reactions
ChemistryOpen
hydrogen isotope exchange
deuterium
iridium catalysis
C−H functionalization
homogeneous catalysis
author_facet Mégane Valero
Dr. Anurag Mishra
Jennifer Blass
Remo Weck
Dr. Volker Derdau
author_sort Mégane Valero
title Comparison of Iridium(I) Catalysts in Temperature Mediated Hydrogen Isotope Exchange Reactions
title_short Comparison of Iridium(I) Catalysts in Temperature Mediated Hydrogen Isotope Exchange Reactions
title_full Comparison of Iridium(I) Catalysts in Temperature Mediated Hydrogen Isotope Exchange Reactions
title_fullStr Comparison of Iridium(I) Catalysts in Temperature Mediated Hydrogen Isotope Exchange Reactions
title_full_unstemmed Comparison of Iridium(I) Catalysts in Temperature Mediated Hydrogen Isotope Exchange Reactions
title_sort comparison of iridium(i) catalysts in temperature mediated hydrogen isotope exchange reactions
publisher Wiley-VCH
series ChemistryOpen
issn 2191-1363
publishDate 2019-09-01
description Abstract The reactivity and selectivity of iridium(I) catalysed hydrogen isotope exchange (HIE) reactions can be varied by using wide range of reaction temperatures. Herein, we have done a detailed comparison study with common iridium(I) catalysts (1–6) which will help us to understand and optimize the approaches of either high selectivity or maximum deuterium incorporation. We have demonstrated that the temperature window for these studied iridium(I) catalysts is surprisingly very broad. This principle was further proven in some HIE reactions on complex drug molecules.
topic hydrogen isotope exchange
deuterium
iridium catalysis
C−H functionalization
homogeneous catalysis
url https://doi.org/10.1002/open.201900204
work_keys_str_mv AT meganevalero comparisonofiridiumicatalystsintemperaturemediatedhydrogenisotopeexchangereactions
AT dranuragmishra comparisonofiridiumicatalystsintemperaturemediatedhydrogenisotopeexchangereactions
AT jenniferblass comparisonofiridiumicatalystsintemperaturemediatedhydrogenisotopeexchangereactions
AT remoweck comparisonofiridiumicatalystsintemperaturemediatedhydrogenisotopeexchangereactions
AT drvolkerderdau comparisonofiridiumicatalystsintemperaturemediatedhydrogenisotopeexchangereactions
_version_ 1724245396643905536