首页> 外文期刊>Journal of the American Chemical Society >DETERMINATION OF THE RELATIVE RATES OF FORMATION, FATES, AND STRUCTURES OF TRIPLET 1,4-BIRADICALS GENERATED IN THE PHOTOCHEMICAL CYCLOADDITION REACTIONS OF 2-CYCLOPENTENONES WITH 2-METHYLPROPENE
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DETERMINATION OF THE RELATIVE RATES OF FORMATION, FATES, AND STRUCTURES OF TRIPLET 1,4-BIRADICALS GENERATED IN THE PHOTOCHEMICAL CYCLOADDITION REACTIONS OF 2-CYCLOPENTENONES WITH 2-METHYLPROPENE

机译:测定2-环戊烯酮与2-甲基丙烯的光化学循环反应中产生的三重链1,4-双自由基的形成,衰变和结构的相对速率

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The structures and relative rates of formation of the isomeric triplet 1,4-biradical intermediates generated in the photocycloaddition reactions between 2-methylpropene and each of 2-cyclopentenone, 2-methyl-2-cyclopentenone, and 3-methyl-2-cyclopentenone were determined. This was accomplished by using hydrogen selenide as a hydrogen atom donor to trap quantitatively the 1,4-biradicals formed in each reaction, The quantum yields of cycloadduct formation in the photocycloaddition reactions were measured as a function of alkene concentration. For each reaction the relative rates of formation of the biradicals and the quantum yield data were combined to determine quantitatively how each biradical partitions between closure (or disproportionation) to product and fragmentation to ground state enone and alkene. It is concluded that the regiochemistry of the enone-alkene photocycloaddition reactions studied is dominated by the manner in which the biradical intermediates partition between products and ground state precursors and not by the relative rates at which they are formed. It is also concluded that methyl substitution at the 3-position of cyclopentenone has little effect on either the relative rates of formation of the various isomeric biradical intermediates or the manner in which they partition between products and starting materials. However, methyl substitution at the 2-position of cyclopentenone slows formation of biradicals in which the alkene is bonded to the enone 2-position and also inhibits closure to cyclobutane products of biradicals formed by bonding of the alkene to the 3-position of the enone. These results can be rationalized if it is assumed that the enone triplet excited state possesses a planar carbon at the 2-position and a pyramidalized carbon at the 3-position, and if it is also assumed that in the biradicals, radical centers at the cyclopentanone 2-position are planar and at the 3-position are pyramidalized. [References: 31]
机译:在2-甲基丙烯与2-环戊烯酮,2-甲基-2-环戊烯酮和3-甲基-2-环戊烯酮之间的光环加成反应中生成的异构三重态1,4-双自由基中间体的结构和相对形成速率为决心。这是通过使用硒化氢作为氢原子供体来定量捕集在每个反应中形成的1,4-双自由基而完成的。测量光环加成反应中环加合物形成的量子产率与烯烃浓度的关系。对于每个反应,将双自由基的相对形成速率和量子产率数据相结合,以定量确定每个双自由基如何在闭合(或歧化)生成产物和片段化为基态烯酮和烯烃之间分配。结论是,所研究的烯-烯烃光环加成反应的区域化学是由双自由基中间体在产物和基态前体之间分配的方式决定的,而不是由它们形成的相对速率决定的。还得出结论,在环戊烯酮的3位上的甲基取代对各种异构双基中间体的相对形成速率或它们在产物和起始原料之间分配的方式几乎没有影响。但是,在环戊烯酮的2位上进行甲基取代会减慢双自由基的形成,在该自由基中,烯烃与烯酮2位键合,并且还会抑制通过将烯烃与烯酮的3位键合而形成的双自由基的环丁烷产物封闭。如果假设烯酮三重态激发态在2位具有平面碳而在3位具有锥体化碳,并且还假设在双自由基中,自由基中心在环戊酮上,则这些结果可以合理化。 2位是平面的,而3位是金字塔形的。 [参考:31]

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