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三氟甲氧基鎓盐、O-(三氟甲基)二苯并呋喃鎓盐:原位合成、性质及作为真正的CF3+物种试剂的应用。

CF3 oxonium salts, O-(trifluoromethyl)dibenzofuranium salts: in situ synthesis, properties, and application as a real CF3+ species reagent.

作者信息

Umemoto Teruo, Adachi Kenji, Ishihara Sumi

机构信息

MEC Laboratory, Daikin Industries, Ltd., Miyukigaoka 3, Tsukuba, Ibaraki 305, Japan.

出版信息

J Org Chem. 2007 Aug 31;72(18):6905-17. doi: 10.1021/jo070896r. Epub 2007 Aug 4.

Abstract

We report in situ synthesis of the first CF(3) oxonium salts, thermally unstable O-(trifluoromethyl)dibenzofuranium salts, which furthermore have different counteranions (BF(4)-, PF(6)-, SbF(6)-, and Sb(2)F(11)-) and ring substituents (tert-butyl, F, and OCH(3)), by photochemical decomposition of the corresponding 2-(trifluoromethoxy)biphenylyl-2'-diazonium salts at -90 to -100 degrees C. The yields markedly increased in the order of BF(4)- < PF(6)- < SbF(6)- < Sb(2)F(11)-. The CF(3) oxonium salts were fully assigned by means of (1)H and (19)F NMR spectroscopy at low temperature. The CF(3) salts decomposed to form CF(4) and dibenzofurans. The half-life times at -60 degrees C of the 2-tert-butyl salts having different counteranions were 29 min for BF(4)- salt 2d, 36 min for PF(6)- salt 2c, 270 min for SbF(6)- salt 2a, and 415 min for Sb(2)F(11)- salt 2b. Those at -60 degrees C of the Sb(2)F(11)- salts having different 2-substituents were 13 min for F salt 3b, 63 min for H (unsubstituted) salt 1b, and 415 min for tert-butyl salt 2b. Thus, the stability of the CF(3) oxonium salts increased in the order of BF(4)- < PF(6)- < SbF(6)- < Sb(2)F(11)- and F < H < tert-butyl, which is in accord with the increasing orders of the non-nucleophilicity of counteranions and the electron-donating effect of ring substituents. 2-tert-Butyl-O-(trifluoromethyl)dibenzofuranium hexafluoroantimonate (2a) was thus chosen and successfully applied as a real CF(3)+ species source to the direct O- and N-trifluoromethylations of alcohols, phenols, amines, anilines, and pyridines under very mild conditions. The thermal decomposition method with a mixture of diazonium salt 17a and aryl- or alkylsulfonic acids, pyridine, or pyridines having an electron-withdrawing group also afforded CF(3)O or CF(3)N products. The trifluoromethylation mechanism is discussed and an S(N)2 mechanism containing the transient formation of free CF(3)+ is proposed. Thus, the present study has demonstrated that the exceedingly reactive CF(3)+ species can be generated much easier than the CH(3)+ species, contrary to the common sense that CF(3)+ is extremely difficult to generate in solution.

摘要

我们报道了首例CF(3) 氧鎓盐(热不稳定的O-(三氟甲基)二苯并呋喃鎓盐)的原位合成,该盐具有不同的抗衡阴离子(BF(4)-、PF(6)-、SbF(6)-和Sb(2)F(11)-)以及环取代基(叔丁基、F和OCH(3)),通过在-90至-100℃下光化学分解相应的2-(三氟甲氧基)联苯基-2'-重氮盐得到。产率按BF(4)- < PF(6)- < SbF(6)- < Sb(2)F(11)-的顺序显著增加。通过低温下的(1)H和(19)F NMR光谱对CF(3) 氧鎓盐进行了完全归属。CF(3) 盐分解形成CF(4) 和二苯并呋喃。具有不同抗衡阴离子的2-叔丁基盐在-60℃下的半衰期,BF(4)-盐2d为29分钟,PF(6)-盐2c为36分钟,SbF(6)-盐2a为270分钟,Sb(2)F(11)-盐2b为415分钟。具有不同2-取代基的Sb(2)F(11)-盐在-60℃下的半衰期,F盐3b为13分钟,H(未取代)盐1b为63分钟,叔丁基盐2b为415分钟。因此,CF(3) 氧鎓盐的稳定性按BF(4)- < PF(6)- < SbF(6)- < Sb(2)F(11)-以及F < H < 叔丁基的顺序增加,这与抗衡阴离子的非亲核性增加顺序以及环取代基的给电子效应一致。因此,选择了2-叔丁基-O-(三氟甲基)二苯并呋喃鎓六氟锑酸盐(2a),并成功地将其作为真正的CF(3)+物种源,用于在非常温和的条件下对醇、酚、胺、苯胺和吡啶进行直接的O-和N-三氟甲基化反应。用重氮盐17a与芳基或烷基磺酸、吡啶或具有吸电子基团的吡啶的混合物进行热分解方法也得到了CF(3)O或CF(3)N产物。讨论了三氟甲基化机理,并提出了一种包含游离CF(3)+瞬态形成的S(N)2机理。因此,本研究表明,与通常认为CF(3)+在溶液中极难生成的常识相反,极具反应性的CF(3)+物种比CH(3)+物种更容易生成。

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