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Catalytic Undirected Meta-Selective C-H Borylation of Metallocenes.


ABSTRACT: Metallocenes are privileged backbones in the fields of synthetic chemistry, catalysis, polymer science, etc. Direct C-H functionalization is undoubtedly the simplest approach for tuning the properties of metallocenes. However, owing to the presence of multiple identical C(sp2 )-H sites, this protocol often suffers from low reactivity and selectivity issues, especially for the regioselective synthesis of 1,3-difunctionalized metallocenes. Herein, an efficient iridium-catalyzed meta-selective C-H borylation of metallocenes is reported. With no need of preinstalled directing groups, this approach enables a rapid synthesis of various boronic esters based on benzoferrocenes, ferrocenes, ruthenocene, and related half sandwich complex. A broad range of electron-deficient and -rich functional groups are all compatible with the process. Notably, C-H borylation of benzoferrocenes takes place exclusively at the benzene ring, which is likely ascribed to the shielding effect of pentamethylcyclopentadiene. The synthetic utility is further demonstrated by easy scalability to gram quantities, the conversion of boron to heteroatoms including N3 , SePh, and OAc, as well as diverse cross-coupling reactions.

SUBMITTER: Zheng H 

PROVIDER: S-EPMC10625117 | biostudies-literature | 2023 Nov

REPOSITORIES: biostudies-literature

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Catalytic Undirected Meta-Selective C-H Borylation of Metallocenes.

Zheng Hao H   Liu Chang-Hui CH   Wang Xiao-Yu XY   Liu Yan Y   Chen Bing-Zhi BZ   Hu Yan-Cheng YC   Chen Qing-An QA  

Advanced science (Weinheim, Baden-Wurttemberg, Germany) 20230826 31


Metallocenes are privileged backbones in the fields of synthetic chemistry, catalysis, polymer science, etc. Direct C-H functionalization is undoubtedly the simplest approach for tuning the properties of metallocenes. However, owing to the presence of multiple identical C(sp<sup>2</sup> )-H sites, this protocol often suffers from low reactivity and selectivity issues, especially for the regioselective synthesis of 1,3-difunctionalized metallocenes. Herein, an efficient iridium-catalyzed meta-sel  ...[more]

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