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Transmission of electronic substituent effects through cage polycyclic alkanes: a computational study of diamantane derivatives based on structural variation

机译:通过笼型多环烷烃传递电子取代基效应:基于结构变化的金刚烷衍生物的计算研究

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摘要

The transmission of long-range polar effects (field effects) across the diamantane cage has been investigated by analyzing the small structural changes induced by a variable substituent X in the phenyl group of 9-substituted 4-phenyldiamantane derivatives. The structures of many such molecules with charged or dipolar substituents have been determined from quantum chemical calculations at the HF/6-31G* and B3LYP/6-311++G** levels of theory. Comparison with the results of a similar study carried out on 4-substituted 1-phenylbicyclo[2.2.2]octane derivatives, where the distance between probe and substituent is substantially smaller, shows that the ability of the diamantane framework to transmit field effects is 45 % of that of the bicyclo[2.2.2]octane framework when X is a dipolar, uncharged substituent. This figure increases to 59 % in the case of charged groups. The structural results support the idea that the field effect of a dipolar substituent attenuates more rapidly with distance than that of a charged group. This makes it impossible to construct a single, universal scale of field parameters including both dipolar and charged groups. A single scale can only be set up for a fixed separation between substituent and probe. The presence of the variable substituent X has a pronounced effect on the geometry of the diamantane cage. The nonbonded distance between the bridgehead carbons C4 and C9 spans an interval about 0.20A ° wide and correlates quite well with the mean value of the three cage angles at C9. These geometric changes are closely similar to those of the corresponding parameters in 4-substituted 1-phenylbicyclo[2.2.2]octane derivatives. The concerted structural variation of the polycyclic cage is controlled primarily by the group electronegativity of X and does not correlate with the much smaller structural variation of the phenyl probe.
机译:通过分析由9-取代的4-苯基二金刚烷衍生物的苯基中的可变取代基X引起的小的结构变化,已经研究了跨越金刚烷笼的远距离极性效应(场效应)的传递。已经从理论上的HF / 6-31G *和B3LYP / 6-311 ++ G **的量子化学计算中确定了许多带有带电或偶极取代基的分子的结构。与对4-取代的1-苯基双环[2.2.2]辛烷衍生物进行的相似研究的结果进行比较,探针和取代基之间的距离小得多,该结果表明金刚烷骨架传递场效应的能力为45当X为偶极不带电荷的取代基时,其为双环[2.2.2]辛烷骨架的%。在收费团体的情况下,这一数字增加到59%。结构结果支持这样的想法,即偶极取代基的场效应随距离的衰减比带电基团的衰减更快。这使得不可能构造包括偶极基团和带电基团的单一通用的场参数标度。只能为取代基和探针之间的固定间隔设置单个刻度。可变取代基X的存在对金刚烷骨架的几何形状具有显着影响。桥头碳C4和C9之间的非键合距离跨度约为0.20A°,并且与C9处三个笼角的平均值具有很好的相关性。这些几何变化与4-取代的1-苯基双环[2.2.2]辛烷衍生物中的相应参数的变化非常相似。多环笼的协调的结构变化主要由X的基团电负性控制,并且与苯基探针的小得多的结构变化无关。

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