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Evaluating the thermal vinylcyclopropane rearrangement (VCPR) as a practical method for the synthesis of difluorinated cyclopentenes : experimental and computational studies of rearrangement stereospecificity

机译:评价热乙烯基环丙烷重排(VCPR)作为合成二氟环戊烯的实用方法:重排立体特异性的实验和计算研究

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摘要

Vinyl cyclopropane rearrangement (VCPR) has been utilised to synthesise a difluorinated cyclopentene stereospecifically and under mild thermal conditions. Difluorocyclopropanation chemistry afforded ethyl 3-(1'(2'2'-difluoro-3'-phenyl)cyclopropyl) propenoate as all four stereoisomers (18a, 18b, 22a, 22b) (all racemic). Trans-E isomer (18a), prepared in 70% yield over three steps, underwent near quantitative VCPR to difluorocyclopentene 23 (99%). Rearrangements were followed by 19F NMR (100-180 °C). While cis/trans cyclopropane stereoisomerisation was facile, favouring trans-isomers by a modest margin, no E/Z alkene isomerisation was observed even at higher temperatures. Neither cis nor trans Z-alkenoates underwent VCPR, even up to much higher temperatures (180 oC). Cis-cyclopropanes underwent [3,3]-rearrangement to afford benzocycloheptadiene species. The reaction stereospecificity was explored using electronic structure calculations and UB3LYP/6-31G* methodology allowed the energy barriers for cyclopropane stereoisomerisation, diastereoisomeric VCPR and [3,3]-rearrangement to be ranked in agreement with experiment.
机译:乙烯基环丙烷重排(VCPR)已用于在温和的热条件下立体定向合成二氟化环戊烯。二氟环丙烷化化学反应得到3-(1'(2'2'-二氟-3'-苯基)环丙基)丙酸乙酯,为所有四种立体异构体(18a,18b,22a,22b)(全部为外消旋的)。在三个步骤中以70%的收率制备的反式E异构体(18a),经过接近定量的VCPR生成二氟环戊烯23(99%)。重排后进行19 F NMR(100-180°C)。尽管顺式/反式环丙烷立体异构化很容易,适度地有利于反式异构体,但即使在较高温度下也未观察到E / Z烯烃异构化。顺式和反式Z链烯酸酯均未进行VCPR,甚至在更高的温度(180 oC)下也未进行。顺式环丙烷经过[3,3]重排,得到苯并环庚二烯物种。使用电子结构计算探索了反应的立体特异性,UB3LYP / 6-31G *方法学使环丙烷立体异构化,非对映异构体VCPR和[3,3]重排的能垒与实验一致。

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