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A direct method to access various functional arylalkoxysilanes by Rh-catalysed intermolecular C-H silylation of alkoxysilanes.


ABSTRACT: Efficient protocols for intermolecular C-H silylations of unactivated arenes and heteroarenes with HMe2SiOEt are disclosed. The silylations are catalysed by a Rh-complex (0.5 mol%) derived from commercially available [Rh(coe)2Cl]2 and (S,S)-Ph-BPE in the presence of cyclohexene at 100 °C, furnishing desired arylethoxydimethylsilanes up to 99% yield. The regioselectivity is mainly affected by the steric bulk of the substituents in arenes and by electronic effects as an ancillary factor. Mechanistic study revealed that the mono-hydrido dimeric Rh-complex, [Rh2(Ph-BPE)2(μ-H)(μ-Cl)], is an active catalytic intermediate, which further suppresses the formation of redistribution byproducts in the silylation. Preliminary results show that the current protocol can be extended to double C-H silylations affording bis-silylated arenes and is applicable to the silylation of HMeSi(OEt)2 to deliver the corresponding (aryl)SiMe(OEt)2.

SUBMITTER: Som S 

PROVIDER: S-EPMC9491085 | biostudies-literature | 2022 Sep

REPOSITORIES: biostudies-literature

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A direct method to access various functional arylalkoxysilanes by Rh-catalysed intermolecular C-H silylation of alkoxysilanes.

Som Salina S   Choi Jongwook J   Katsoulis Dimitris D   Lee Kangsang L KL  

Chemical science 20220823 36


Efficient protocols for intermolecular C-H silylations of unactivated arenes and heteroarenes with HMe<sub>2</sub>SiOEt are disclosed. The silylations are catalysed by a Rh-complex (0.5 mol%) derived from commercially available [Rh(coe)<sub>2</sub>Cl]<sub>2</sub> and (<i>S</i>,<i>S</i>)-Ph-BPE in the presence of cyclohexene at 100 °C, furnishing desired arylethoxydimethylsilanes up to 99% yield. The regioselectivity is mainly affected by the steric bulk of the substituents in arenes and by elect  ...[more]

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