Egalahewa Sathsara, Albayer Mohammad, Aprile Antonino, Dutton Jason L
Department of Chemistry and Physics, La Trobe Institute for Molecular Science, La Trobe University , Melbourne, Victoria, Australia , 3086.
Inorg Chem. 2017 Feb 6;56(3):1282-1288. doi: 10.1021/acs.inorgchem.6b02386. Epub 2017 Jan 19.
We report the outcomes of the reactions of aromatic group 16 thiophene, selenophene, and tellurophene rings with the I(III) oxidants PhI(OAc)(OTf) and [PhI(Pyr)][OTf] (Pyr = pyridine). In all reactions, oxidative processes take place, with generation of PhI as the reduction product. However, with the exception of tellurophene with PhI(OAc)(OTf), +4 oxidation state complexes are not observed, but rather a variety of other processes occur. In general, where a C-H unit is available on the 5-membered ring, an electrophilic aromatic substitution reaction of either -IPh or pyridine onto the ring occurs. When all positions are blocked, reactions with PhI(OAc)(OTf) give acetic and triflic anhydride as the identifiable oxidative byproducts, while [PhI(Pyr)][OTf] gives pyridine electrophilic aromatic substitution onto the peripheral rings. Qualitative mechanistic studies indicate that the presence of the oxidizable heteroatom is required for pyridine to act as an electrophile in a substantial manner.
我们报告了芳香族第16族噻吩、硒吩和碲吩环与I(III)氧化剂PhI(OAc)(OTf)和[PhI(Pyr)][OTf](Pyr = 吡啶)反应的结果。在所有反应中,均发生氧化过程,生成PhI作为还原产物。然而,除了碲吩与PhI(OAc)(OTf)的反应外,未观察到 +4氧化态配合物,而是发生了各种其他过程。一般来说,当五元环上有一个C-H单元时,-IPh或吡啶会发生亲电芳香取代反应而连接到环上。当所有位置都被占据时,与PhI(OAc)(OTf)的反应会生成可识别的氧化副产物乙酸酐和三氟甲磺酸酐,而[PhI(Pyr)][OTf]会使吡啶发生亲电芳香取代反应连接到外围环上。定性机理研究表明,可氧化杂原子的存在是吡啶以显著方式作为亲电试剂所必需的。