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Electrophilic substitution of acetyltrimethylsilane with tellurium(IV) halides: A synthetic route to 3-methyl-5-(trimethylsilyl)-1,2-oxatellurol-1-ium halides

Authors :
Ashok K.S. Chauhan
Shafalika Misra
Ramesh C. Srivastava
Andrew Duthie
Ray J. Butcher
Source :
Journal of Organometallic Chemistry. 791:119-123
Publication Year :
2015
Publisher :
Elsevier BV, 2015.

Abstract

The reaction of tellurium tetrahalides, TeX4 (X Cl. Br) with acetyltrimethylsilane in CCl4 at ambient temperature, unlike that of the aryltellurium trichlorides, ArTeCl3 that give the expected electrophilic substitution products, Ar(Me3SiCOCH2)TeCl2, (Ar = 1-C10H7, 2; 2,4,6-Me3C6H2, 3), afforded novel silylated heterocycles, 3-methyl-5-(trimethylsilyl)-1,2-oxatellurol-1-ium halides 1a and 1b. These Te(II) heterocyclic compounds undergo halide exchange with sodium iodide and also add dihalogens oxidatively to afford the corresponding iodide, 1c and the Te(IV) trihalides, 5a and 5b respectively. A large lowering of ν(CO) is indicative of strong Te⋯O C interactions among these heterocycles, and is also substantiated by single-crystal X-ray diffraction data for 3-methyl-5-(trimethylsilyl)-1,2-oxatellurol-1-ium chloride. The 125Te chemical shifts for the new 10-Te-3 telluranes and 12-Te-5 pertelluranes that involve tellurium bound to two highly electronegative atoms (O, X) are among the highest (downfield) reported for organotellurium(II) and (IV) compounds.

Details

ISSN :
0022328X
Volume :
791
Database :
OpenAIRE
Journal :
Journal of Organometallic Chemistry
Accession number :
edsair.doi...........cb06a356a5138663adf80d6d64ef3c2c
Full Text :
https://doi.org/10.1016/j.jorganchem.2015.05.055