Reactions of a Highly Crowded Triorganotin Iodide with Silver Salts. Migration of a Methyl Group from Silicon to Tin within a Cation
Author:
Affiliation:
1. School of Chemistry, Physics and Environmental Science, University of Sussex, Brighton, U.K. BN1 9QJ
Publisher
American Chemical Society (ACS)
Subject
Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/om011079z
Reference30 articles.
1. The reactions of [tris(trimethylsilyl)methyl]silicon halides and hydrides with electrophilic reagents
2. The proportion of 1,3-migration of a methyl group in the reactions of the iodide (Me3Si)3CSi(CD3)2I with silver salts in alcohols. Mechanistic implications
3. Unusual mechanistic pathways. The novel chemistry of compounds with tris(trimethylsilyl)methyl or related ligands on siliconElectronic supplementary information (ESI) available: a complete list of the author's publications, with titles, on compounds with trisyl or related ligands on silicon (and for comparison, on germanium or tin) or species containing trisyl-type groups not on a metal or metalloid. See http://www.rsc.org/suppdata/dt/b1/b106509m/
4. 1,3-Migration of a methyl group from tin to silicon via a cationic intermediate
5. Oxidative Addition to a Monomeric Stannylene To Give Four-Coordinate Tin Compounds Containing the Bulky Bidentate Ligand C(SiMe3)2SiMe2CH2CH2Me2Si(Me3Si)2C. Crystal Structures of CH2Me2Si(Me3Si)2CSnC(SiMe3)2SiMe2CH2, CH2Me2Si(Me3Si)2CSnMe(OCOCF3)C(SiMe3)2SiMe2CH2, and (CF3COO)2MeSnC(SiMe3)2SiMe2CH2CH2Me2Si- (Me3Si)2CSnMe(OCOCF3)2
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