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Carboxylate-assisted β-(Z) stereoselective hydrosilylation of terminal alkynes catalyzed by a zwitterionic bis-NHC rhodium(III) complex
- Source :
- Digital.CSIC. Repositorio Institucional del CSIC, instname
- Publication Year :
- 2020
- Publisher :
- ACS Publications, 2020.
-
Abstract
- The zwitterionic compound [Cp*RhCl{(MeIm)2CHCOO}] is an efficient catalyst for the hydrosilylation of terminal alkynes with excellent regio- and stereoselectivity toward the less thermodynamically stable β-(Z)-vinylsilane isomer under mild reaction conditions. A broad range of linear 1-alkynes, cycloalkyl acetylenes, and aromatic alkynes undergo the hydrosilylation with HSiMe2Ph to afford the corresponding β-(Z)-vinylsilanes in quantitative yields in short reaction times. The reaction of aliphatic alkynes with HSiEt3 is slower, resulting in a slight decrease of selectivity toward the β-(Z)-vinylsilane product, which is still greater than 90%. However, a significant selectivity decrease is observed in the hydrosilylation of aromatic alkynes because of the β-(Z) → β-(E) vinylsilane isomerization. Moreover, the hydrosilylation of bulky alkynes, such as t-Bu–C≡CH or Et3SiC≡CH, is unselective. Experimental evidence suggests that the carboxylate function plays a key role in the reaction mechanism, which has been validated by means of density functional theory calculations, as well as by mass spectrometry and labeling studies. On the basis of previous results, we propose an ionic outer-sphere mechanism pathway in which the carboxylate fragment acts as a silyl carrier. Namely, the hydrosilylation mechanism entails the heterolytic activation of the hydrosilane assisted by the carboxylate function to give the hydrido intermediate [Cp*RhH{(MeIm)2CHCOO–SiR3}]+. The transference of the silylium moiety from the carboxylate to the alkyne results in the formation of a flat β-silyl carbocation intermediate that undergoes a hydride transfer from the Rh(III) center to generate the vinylsilane product. The outstanding β-(Z) selectivity results from the minimization of the steric interaction between the silyl moiety and the ligand system in the hydride transfer transition state.<br />The authors express their appreciation for the financial support from the Spanish Ministry of Economy and Competitiveness MINECO/FEDER under the project CTQ2016-75884-P and the Regional Governments of Aragón/FEDER 2014–2020 “Building Europe from Aragón” (group E42_17R). In addition, the resources from the supercomputer “Memento,” technical expertise, and assistance provided by BIFIZCAM (Universidad de Zaragoza) are acknowledged.
- Subjects :
- chemistry.chemical_classification
010405 organic chemistry
Chemistry
Hydrosilylation
chemistry.chemical_element
Alkyne
General Chemistry
010402 general chemistry
01 natural sciences
Medicinal chemistry
Catalysis
0104 chemical sciences
Rhodium
chemistry.chemical_compound
Stereoselectivity
Carboxylate
Selectivity
Vinylsilane
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- Digital.CSIC. Repositorio Institucional del CSIC, instname
- Accession number :
- edsair.doi.dedup.....fce1fc82ebbc99105a4fac67dce3810e