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N-Indolylsilylene Cobalt(I) Chloride: A Base Metal Catalyst for Alkene Hydrosilylation
Xiangxu Zhang1, Qingshuang Li1, Hongjian Sun1
1School of Chemistry and Chemical Engineering, Key Laboratory of Special Functional Aggregated Materials, Ministry of Education, Shandong University, Shanda Nanlu 27, 250100 Jinan, People's Republic of China.
None:
The preparation of the N-indolylsilylene ligand L1, N-(LSi:)-indole (L = PhC(NtBu)2), is reported. N-Indolylsilylene cobalt(I) chloride (1) and N-indolyldiphenylphosphine cobalt(I) chloride (2) were prepared by the reaction of CoCl(PMe3)3 with N-indolylsilylene ligand L1 and N-indolyldiphenylphosphine L2, respectively. Both complex 1 and complex 2 were identified as highly active catalysts in alkene hydrosilylation, among which 1 showed superior performance compared to that of CoCl(PMe3)3 and any other available silylene cobalt complexes. The experimental results indicate that when aryl alkenes are used as substrates, complex 1 can efficiently and selectively produce Markovnikov addition products at 50 °C within 10 min. The catalytic system is very fast, and the catalytic activity of complex 1 is superior to any other available silylene cobalt complexes. In the process of exploring the catalytic pathway, silyl dihydrido silylene Co complex 4 was obtained from the stoichiometric reaction between complex 1 with Ph2SiH2. N-Indolylsilylene cobalt(I) hydride is considered an active catalyst for this system in the proposed catalytic mechanism. The molecular structures of the cobalt complexes 1, 2, and 4 were confirmed with a single-crystal X-ray diffraction technique.
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