首页> 外文期刊>The Journal of Organic Chemistry >HIGHLY SELECTIVE FLUORINATING AGENTS - A COUNTERANION-BOUND N-FLUOROPYRIDINIUM SALT SYSTEM
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HIGHLY SELECTIVE FLUORINATING AGENTS - A COUNTERANION-BOUND N-FLUOROPYRIDINIUM SALT SYSTEM

机译:高度选择性的氟化剂-对映体结合的N-氟吡啶鎓盐系统

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A series of alkyl- or (trifluoromethyl)-substituted N-fluoropyridinium-2-sulfonates 2a-h, differing in fluorinating power, were synthesized, and assessment was made of the effectiveness of each selective fluorinating agent. N-Fluoropyridinium-3- and -4-sulfonates 3 and 4 were also synthesized. Power-variables 2a-h were found to be highly selective fluorinating agents for a wide range of nucleophilic substrates such as activated aromatics, enol trialkylsilyl and alkyl ethers, active methylene compounds, activated olefins, and sulfides. Thus, phenol, naphthol, phenylurethane, and the trimethylsilyl ether of phenol were exclusively or highly selectively fluorinated at the o-position with 2f-h. Conjugated enol trialkylsilyl ethers of a steroid were regioselectively fluorinated at the 6-position with moderately powerful 2b-e. This regioselectivity increased with the bulkiness of the silyl part, and with the most bulky triisopropylsilyl group exclusive B-fluorination was achieved. Preferential beta-stereoselective fluorination at the 6-position was observed. N-Fluoropyridinium-2-sulfonates were activated with an acid. This acid-catalyzed fluorination led to the preferential p-fluorination of anisole. The present results can be explained based on the capacity of the 2-sulfonate anion to interact with the hydroxy group of phenol or naphthol, NH group of phenylurethane, silicon atoms of silyl ethers, or protons of acids. [References: 64]
机译:合成了一系列氟化能力不同的烷基或(三氟甲基)取代的N-氟吡啶鎓-2-磺酸盐2a-h,并评估了每种选择性氟化剂的有效性。还合成了N-氟吡啶鎓-3-和-4-磺酸盐3和4。发现功率变量2a-h是用于多种亲核底物的高度选择性的氟化剂,所述亲核底物诸如活化的芳族化合物,烯醇三烷基甲硅烷基和烷基醚,活化的亚甲基化合物,活化的烯烃和硫化物。因此,苯酚,萘酚,苯氨基甲酸酯和苯酚的三甲基甲硅烷基醚在邻位用2f-h专门或高度选择性地氟化。类固醇的共轭烯醇三烷基甲硅烷基醚在6位上与中等强度的2b-e进行区域选择性氟化。该区域选择性随甲硅烷基部分的体积增加而增加,并且与最大体积的三异丙基甲硅烷基基团一起实现了排他的B-氟化。在6-位观察到优选的β-立体选择性氟化。用酸活化N-氟吡啶鎓-2-磺酸盐。该酸催化的氟化导致苯甲醚的优先对氟。可以基于2-磺酸根阴离子与酚或萘酚的羟基,苯基氨基甲酸酯的NH基,甲硅烷基醚的硅原子或酸的质子相互作用的能力来解释本结果。 [参考:64]

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