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A Generalized Approach for Distal C-H Arylation of Organic Building Blocks: Unveiling the Role of Counter Anion.


ABSTRACT: Aryl-aryl coupling at remote C-H sites remain a formidable challenge in organic synthesis, particularly for electronically biased arenes and heteroarenes. Herein, we report a generalized and versatile protocol for meta-selective C-H arylation using readily available aryl iodides as coupling partners. This strategy overcomes key limitations of prior methods such as reliance on boronic acids and limited substrate scope by employing a Pd(II)/Pd(IV) catalytic cycle assisted by a removable meta-directing group. Importantly, DFT studies revealed that the counter anion critically influences selectivity: trifluoroacetate reduces the activation energy for meta-C-H activation and thereby improving selectivity. This protocol is applicable to a wide array of functional groups and scaffolds, including phenylacetic acids, anilines, phenols, indolines, and pharmaceutical derivatives like Naproxen and Ketoprofen. Moreover, mechanistic investigations via isotope labeling and kinetic studies provide valuable insights into the reaction pathway. Post-arylation transformations, including directing group removal, further underscore the synthetic utility of this method. Overall, this work introduces a practical, mechanistically guided platform for remote C-H arylation, with broad implications for medicinal chemistry and complex molecule construction.

SUBMITTER: Grover J 

PROVIDER: S-EPMC12915134 | biostudies-literature | 2026 Feb

REPOSITORIES: biostudies-literature

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A Generalized Approach for Distal C-H Arylation of Organic Building Blocks: Unveiling the Role of Counter Anion.

Grover Jagrit J   Prakash Gaurav G   Mandal Astam A   Ghosh Devika D   Maiti Siddhartha S   Empel Claire C   Maiti Debabrata D  

Advanced science (Weinheim, Baden-Wurttemberg, Germany) 20251225 10


Aryl-aryl coupling at remote C-H sites remain a formidable challenge in organic synthesis, particularly for electronically biased arenes and heteroarenes. Herein, we report a generalized and versatile protocol for meta-selective C-H arylation using readily available aryl iodides as coupling partners. This strategy overcomes key limitations of prior methods such as reliance on boronic acids and limited substrate scope by employing a Pd(II)/Pd(IV) catalytic cycle assisted by a removable meta-direc  ...[more]

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