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Ir-III-Catalyzed Selective ortho-Monoiodination of Benzoic Acids with Unbiased C-H Bonds
Stockholm University, Faculty of Science, Department of Organic Chemistry. AstraZeneca, Sweden.
Stockholm University, Faculty of Science, Department of Organic Chemistry.
Number of Authors: 32020 (English)In: Chemistry - A European Journal, ISSN 0947-6539, E-ISSN 1521-3765, Vol. 26, no 45, p. 10185-10190Article in journal (Refereed) Published
Abstract [en]

An iridium‐catalyzed selective ortho‐monoiodination of benzoic acids with two equivalent C−H bonds is presented. A wide range of electron‐rich and electron‐poor substrates undergo the reaction under mild conditions, with >20:1 mono/di selectivity. Importantly, the C−H iodination occurs selectively ortho to the carboxylic acid moiety in substrates bearing competing coordinating directing groups. The reaction is performed at room temperature and no inert atmosphere or exclusion of moisture is required. Mechanistic investigations revealed a substrate‐dependent reversible C−H activation/protodemetalation step, a substrate‐dependent turnover‐limiting step, and the crucial role of the AgI additive in the deactivation of the iodination product towards further reaction.

Place, publisher, year, edition, pages
2020. Vol. 26, no 45, p. 10185-10190
Keywords [en]
C-H activation, iodination, iridium, ortho-functionalization, selectivity
National Category
Chemical Sciences
Identifiers
URN: urn:nbn:se:su:diva-184371DOI: 10.1002/chem.202002204ISI: 000552350900001PubMedID: 32449557OAI: oai:DiVA.org:su-184371DiVA, id: diva2:1473265
Available from: 2020-10-05 Created: 2020-10-05 Last updated: 2022-02-25Bibliographically approved
In thesis
1. Iridium-Catalyzed C−H Activation Methods for Late-Stage Functionalization of Pharmaceuticals
Open this publication in new window or tab >>Iridium-Catalyzed C−H Activation Methods for Late-Stage Functionalization of Pharmaceuticals
2022 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

C-H activations have over the recent decades risen from a mere curiosity to a viable synthetic strategy. However, challenges in terms of accessible transformations, selectivity and functional group tolerance limit the widespread applicability of this approach. The aim of the work presented in this thesis was to develop directed ortho C-H activation methodologies specifically designed for applications in drug discovery. The [Cp*Ir(III)] catalytic system was key for the herein described transformations.

Chapter 2 covers the development of selective monoiodination of benzoic acids. A mono/di selectivity >20:1 was observed throughout a range of diversely functionalized substrates. Mechanistic investigations revealed the key role of the Ag(I) additive in controlling selectivity.

Chapter 3 discusses C-H methylations applied to a wide range of benzoic acids, including examples of late-stage functionalization of marketed drugs. The methodology also allows for introduction of CD3 groups. Biological studies demonstrated positive effect on biological and physical properties of pharmaceuticals as the result of methylation.

In chapter 4 the C-H amination and sulfonamidation of benzoic acids is described, with applications for the synthesis of aminated analogues of drug-like molecules. Rapid synthesis of conjugates relevant to drug discovery is also demonstrated.

Chapter 5 is dedicated to the development of a general C-H amination protocol, successfully applied to 21 distinct directing groups. The utility of the method is demonstrated by the functionalization of 11 complex drugs and natural products. Directing group informer libraries and functional group tolerance studies enabled the generation of guidelines for reaction outcome prediction.

Place, publisher, year, edition, pages
Stockholm: Department of Organic Chemistry, Stockholm University, 2022. p. 92
Keywords
amination, catalysis, C-H activation, C-H functionalization, high-throughput experimentation, iodination, iridium, isotope labelling, late-stage functionalization, methylation
National Category
Organic Chemistry
Research subject
Organic Chemistry
Identifiers
urn:nbn:se:su:diva-199212 (URN)978-91-7911-716-0 (ISBN)978-91-7911-717-7 (ISBN)
Public defence
2022-01-27, Magnélisalen, Kemiska övningslaboratoriet, Svante Arrhenius väg 16 B and online via Zoom: https://stockholmuniversity.zoom.us/j/63066246042, Stockholm, 09:00 (English)
Opponent
Supervisors
Funder
Swedish Foundation for Strategic Research
Available from: 2021-12-21 Created: 2021-11-29 Last updated: 2021-12-15Bibliographically approved

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Weis, ErikMartin-Matute, Belén

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