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Syntheses and Some Chemistry of 1,2- and 1,1-Bis(2-pyrrolyl)ethenes

机译:1,2-和1,1-双(2-吡咯基)乙烯的合成及某些化学反应

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trans-1,2-Bis(2-pyrrolyl)ethenes (e.g. 18-20) are prepared by McMurry-type reductive coupling of the corresponding 2-formylpyrroles. The isomeric 1,1-bis(2-pyrrolyl)ethenes (e.g. 24) are prepared as a minor byproduct in the reaction of 2-unsubstituted pyrroles (e.g. 22) with acetic anhydride under Friedel-Crafts conditions; the major product, as expected is the 2-acetylpyrrole 23. However, 5-(chloromethyl)dipyrromethanes (e.g. 35) can be obtained in high yield by reaction of 2-unsubstituted pyrroles 22 with chloroacetaldehyde diethyl acetal. Base-catalyzed elimination of HCl from 35 affords the 1,1-bis(2-pyrrolyl)ethene 24 along with the trans- and cis-1,2-bis(2-pyrrolyl)-ethenes 18 and 36, respectively. Conditions are optimized to afford a 66% yield of the 1,1-bis(2-pyrrolyl)ethene 24. In neutral organic solvents, 1,1-bis(2-pyrrolyl)ethenes exist in the ethene tautomeric form 2, rather than as the corresponding 5-methyldipyrromethene isomer 3; however, under acidic conditions, the 5-methyldipyrromethene salt 38 is observed, and the 5-methyl group undergoes acid-catalyzed exchange in deuterated solvents.1,1-Bis(2-pyrrolyl)ethenes (e.g. 24) undergo standard chemistry, such as catalytic hydrogenation (Adams catalyst) of the alkene bond (to give 5-methyldipyrromethane 44), Vilsmeier formylation [to give 2-formyl-1,1-bis(2-pyrrolyl)-ethene 57], and reaction with Eschenmoser's salt (N,N-dimethyl(methylene)ammonium iodide) [to give 2-((N,N-dimethylamino)methyl)-1,1-bis(2-pyrrolyl)ethene 59]. Both the 5-methyldipyrromethane-1,9-dicarboxylic acid 45 and the 1,1-bis(5-carboxy-3,4-dimethyl-2-pyrrolyl)ethene 53 react with the 1,9-diformyldipyrromethane 46, under standard MacDonald conditions, to give 3,5,8-trimethyl-deuteroporphyrin IX dimethyl ester 47.
机译:反式1,2-双(2-吡咯基)乙烯(例如18-20)是通过相应的2-甲酰基吡咯的McMurry型还原偶联制备的。异构的1,1-双(2-吡咯基)乙烯(例如24)是在Friedel-Crafts条件下2-未取代的吡咯(例如22)与乙酸酐的反应中作为副产物制备的。如所预期的,主要产物是2-乙酰基吡咯23。然而,通过2-未取代的吡咯22与氯乙醛二乙基缩醛的反应可以高产率获得5-(氯甲基)二吡咯甲烷(例如35)。从35中碱催化除去HCl分别得到1,1-双(2-吡咯基)乙烯24​​以及反式和顺式1,2-双(2-吡咯基)乙烯18和36。优化条件以提供66%产率的1,1-双(2-吡咯基)乙烯24​​。在中性有机溶剂中,1,1-双(2-吡咯基)乙烯以乙烯互变异构形式2而不是作为相应的5-甲基二吡咯亚甲基异构体3;然而,在酸性条件下,观察到5-甲基二吡咯亚甲基盐38,并且5-甲基在氘代溶剂中经历了酸催化的交换。1,,1-双(2-吡咯基)乙烯(例如24)经历了标准化学反应,例如作为烯烃键的催化加氢(亚当斯催化剂)(得到5-甲基二吡咯甲烷44),维尔斯迈尔甲酰化[得到2-甲酰基-1,1-双(2-吡咯基)-乙烯57],并与Eschenmoser盐( N,N-二甲基(亚甲基)碘化铵)[得到2-((N,N-二甲基氨基)甲基)-1,1-双(2-吡咯基)乙烯59]。在标准麦克唐纳条件下,5-甲基二吡咯甲烷-1,9-二羧酸45和1,1-双(5-羧基-3,4-二甲基-2-吡咯基)乙烯53均与1,9-二甲酰基二吡咯甲烷46反应在此条件下,得到3,5,8-三甲基-氘卟啉IX二甲酯47。

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