首页> 外文期刊>The Journal of Organic Chemistry >Unrecognized Intramolecular and Intermolecular Attractive Interactions between Fluorine-Containing Motifs and Ether, Carbonyl, and Amino Moieties
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Unrecognized Intramolecular and Intermolecular Attractive Interactions between Fluorine-Containing Motifs and Ether, Carbonyl, and Amino Moieties

机译:未识别含氟基序和醚,羰基和氨基部分之间的分子内和分子间的分子间相互作用

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In order to elucidate to what extent Coulombic and other interactions contribute to the origins of contrasteric phenomena, we have identified a significant, previously unrecognized interaction between fluorine-containing motifs and groups or molecules containing main-group heteroatoms. The axial conformers of both 2-methoxy- and 2-trifluoromethoxytetra-hydropyrans preferentially adopt a rotameric arrangement in which the OCH3 and the OCF3 groups are gauche to the ring oxygen. Given that one would expect a repulsive Columbic interaction to exist between the electronegative fluorines of the CF3 group and the ring oxygen in this rotomeric orientation, this surprising result suggests that an attractive interaction exists between the CF3 group and the oxygen of the ring. The generality and origin of this interaction was examined using nonpolar CF4 to probe intermolecular interactions with systems such as dimethyl ether, trimethylamine, trimethylphosphine, and acetone. In each case there was an attractive interaction leading to formation of a complex. The attraction is not due to van der Waals forces. Rather, the fluorine lone pairs of the CF4 often act as an electron donor in these complexes leading to a transfer of charge between the reactants and formation of the complex. These previously unrecognized fluorine-heteroatom interactions likely play a significant role in the context of understanding the binding interactions of medicinally relevant molecules or pharmaceuticals possessing fluorine-containing pharmacophores with their targets.
机译:为了阐明库仑和其他相互作用在多大程度上有助于射门现象的起源,我们已经鉴定了含氟基序和含有主群杂原子的基团或分子之间的显着性,先前未被识别的相互作用。 2-甲氧基和2-三氟甲氧基羟氢吡喃的轴向簇优先采用旋转络体布置,其中OCH3和OCF3基团是环氧的Gauche。鉴于该令人惊讶的结果表明,鉴于CF3组的电信荧光和环氧氧之间的反应性相互作用,表明CF3组与环的氧气之间存在有吸引力的相互作用。使用非极性CF4检查该相互作用的一般性和起源,以探测与二甲醚,三甲胺,三甲基膦和丙酮等系统的分子间相互作用。在每种情况下,有一个有吸引力的相互作用导致形成复杂的。吸引力不是van der Waals力量。相反,CF4的氟唯一对通常用作这些配合物中的电子给体,导致反应物之间的电荷转移和复合物的形成。这些以前未被识别的氟 - 杂原子相互作用可能在理解药物相关分子或药物与其靶标具有含氟药物的结合相互作用的背景下发挥重要作用。

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