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Novel catalytic Hunsdiecker-Heck (CHH) strategy toward All-E stereocontrolled ferrocene-capped conjugated push-pull polyenes

机译:面向全E立体控制的二茂铁封顶的共轭推挽多烯的新型催化Hunsdiecker-Heck(CHH)策略

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摘要

Halodecarboxylation reaction of ferrocenylacrylic acid 1 and ferrocenyldienoic acid 3d with N-bromo- and N-iodosuccinimide in the presence of catalytic tetrabutylammonium trifluoroacetate at -40 degrees C and -78 degrees C affords the corresponding beta-halovinylferrocenes 2a, 2b and delta-haloferrocenyldiene 4 in 37-72% yields. Heck reaction of beta-iodovinylferrocene 2a with vinyl substrates (CH2=CH-Z where Z = CO2Me, CO2Et, COMe, CO2H, CONH2, 4'-NO2C6H4) in the presence of tri(4-tolyl)arsine/palladium acetate/lithium chloride/triethylamine in acetonitrile at 35-80 degrees C affords the corresponding ferrocenyldienes 3a-3f in 50-81% isolated yields. Similar reaction of delta-iodoferrocenyldiene 4 with vinyl substrates (CH2=CH-Z where Z = CO2Me, CO2Et, CO2H, 4'-NO2C6H4) affords the corresponding ferrocenyltrienes 5a-5d in 55-87% isolated yields. The ferrocene-capped conjugated dienes and trienes show excellent all-E stereoselectivity (vide NMR). The electronic, redox, and nonlinear optical properties of ferrocenylpolyenes have been evaluated. The data suggest that upon increasing the polyene chain length, (a) the absorption maxima shifts progressively to higher wavelength, (b) the oxidation potential of the Fc/Fc(+) couple (E-1/2) decreases, and (c) the HRS-derived second-order NLO response (beta) increases. From the insights derived from semiempirical calculation (ZINDO/1), a mechanism for the halodecarboxylation reaction has been proposed suggesting the prior formation of tetrabutylammonium salt of ferrocenylacrylic acid I. Attack of the halogenium atom at the pi(c=c) in I leads to the formation of intermediate II, and the latter triggers the elimination of carbon dioxide. [References: 36]
机译:在三氟乙酸四丁铵催化下,在-40°C和-78°C下,二茂铁基丙烯酸1和二茂铁基二烯酸3d与N-溴代和N-碘代琥珀酰亚胺的卤代羧化反应得到相应的β-卤代戊二烯基二茂铁2a,2b和δ-卤代二茂铁基二烯4收率为37-72%。在三(4-甲苯基)ar /乙酸钯/锂存在下,β-碘乙烯基二茂铁2a与乙烯基底物(CH2 = CH-Z,其中Z = CO2Me,CO2Et,COMe,CO2H,CONH2、4'-NO2C6H4)的Heck反应在35-80℃在乙腈中的氯化物/三乙胺以50-81%的分离产率得到相应的二茂铁二烯3a-3f。 δ-碘二茂铁基二烯4与乙烯基底物的类似反应(CH2 = CH-Z,其中Z = CO2Me,CO2Et,CO2H,4'-NO2C6H4)以55-87%的分离产率得到相应的二茂铁二茂铁5a-5d。二茂铁封端的共轭二烯和三烯显示出极好的全E立体选择性(通过NMR)。二茂铁基多烯的电子,氧化还原和非线性光学性质已得到评估。数据表明,随着多烯链长度的增加,(a)吸收最大值逐渐移向更高的波长,(b)Fc / Fc(+)对的氧化电位(E-1 / 2)降低,并且(c ),HRS衍生的二阶NLO响应(β)增加。从半经验计算(ZINDO / 1)得出的见解中,提出了卤代羧化反应的机理,这表明先形成了二茂铁基丙烯酸I的四丁基铵盐。I原子中pi(c = c)处的卤原子攻击形成中间体Ⅱ,后者引发了二氧化碳的消除。 [参考:36]

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