...
首页> 外文期刊>Physical chemistry chemical physics: PCCP >Unusual bonding modes of perfluorobenzene in its polymeric (dimeric, trimeric and tetrameric) forms: entirely negative fluorine interacting cooperatively with entirely negative fluorine
【24h】

Unusual bonding modes of perfluorobenzene in its polymeric (dimeric, trimeric and tetrameric) forms: entirely negative fluorine interacting cooperatively with entirely negative fluorine

机译:全氟苯在其聚合形式(二聚体,三聚体和四聚体)中的不寻常键合模式:全氟与全氟协同作用

获取原文
获取原文并翻译 | 示例
           

摘要

The F delta-center dot center dot center dot F delta- intermolecular synthon was recently observed to be useful for generating a two-dimensional layered supramolecular architecture on the Ag(111) surface (Kawai, et al., ACS Nano, 2015). This was formed when the entirely negative covalently bonded fluorine atoms in phenyleneethynylene(bis(2,3,5,6-tetrafluoro4-(2,3,4,5,6-pentafluorophenylethynyl)phenyl)-ethyne (BPEPE-F18)) were in close proximity to the same atoms in another BPEPE-F18 molecule. With a view to provide rigorous insights into the physical chemistry of such an intermolecular synthon, we have selected perfluorobenzene (C6F6) as a model compound, and have performed extensive DFT-M06-2X/6-311++ G(d,p) investigations on a number of its homomolecular dimers, trimers, and tetramers. Of the twelve (C6F6)(2) dimers investigated, a displaced-parallel arrangement with an uncorrected binding energy (Delta E) of -7.4 kcal mol(-1) was found to be the most stable, and an incorporation of the basis set superposition error (BSSE) has significantly reduced its Delta E to -4.7 kcal mol(-1). Besides, the DE for a minimum-energy least stable conformation of the same dimer, which involves a single sigma(hole)(-)center dot center dot center dot sigma(hole)(-) type F delta-center dot center dot center dot F delta- intermolecular bonding interaction, amounts to -0.62 and -0.24 kcal mol(-1) without and with BSSE, respectively. The geometry of another conformation of the dimer, which accompanies a set of three F delta-center dot center dot center dot F delta- intermolecular interactions somehow similarly to those observed in the layered supramolecular structure formed by the BPEPE-F18 molecules, lies at a relative energy of 6.5 kcal mol(-1) above the most stable conformation. Passing from the latter dimer to an analogous (C6F6) 3 trimer, as well as from the trimer to an analogous (C6F6)(4) tetramer, the latter two clusters comprising windmill-type F delta-center dot center dot center dot F delta- intermolecular topologies, we have marked a preferential increase in the value of Delta E from -0.94 (dimer) to -2.76 (trimer) to -4.49 kcal mol(-1) (tetramer), thereby suggesting the presence of cooperative binding. An energy decomposition analysis has revealed that dispersion and polarization are the principal driving forces that bring the C6F6 molecules together in complex configurations. While a reasonable agreement was found between the charge density based topological results of the intermolecular bonding interactions that emerged from the application of Quantum Theory of Atoms in Molecules (QTAIM) and Reduced Density Gradient approaches to all the polymeric compounds, the results of the latter method were found to be too vague especially near the (3, + 1) ring critical point regions. QTAIM's source function analysis has suggested that the fully negatively charged fluorine atoms in C6F6 serve as sinks for the F delta-center dot center dot center dot F delta- bond formation.
机译:最近观察到,F三角形中心点中心点F三角形分子间合成子可用于在Ag(111)表面上生成二维分层的超分子体系(Kawai等人,ACS Nano,2015)。这是在亚苯基乙炔基(双(2,3,5,6-四氟4-(2,3,4,5,6-五氟苯基乙炔基)苯基)乙炔(BPEPE-F18))中完全负价共价键合的氟原子形成时形成的紧邻另一个BPEPE-F18分子中的相同原子。为了提供对这种分子间合成子的物理化学的严格了解,我们选择了全氟苯(C6F6)作为模型化合物,并进行了广泛的DFT-M06-2X / 6-311 ++ G(d,p)对其许多同分子二聚体,三聚体和四聚体进行了研究。在研究的十二个(C6F6)(2)二聚体中,发现位移-平行排列的未校正结合能(Delta E)为-7.4 kcal mol(-1)是最稳定的,并且结合了基础集叠加误差(BSSE)已将其Delta E大大降低至-4.7 kcal mol(-1)。此外,相同二聚体的最低能量最低稳定构象的DE,涉及单个sigma(孔)(-)中心点中心点中心点sigma(hole)(-)型Fδ中心点中心点中心没有BSSE和有BSSE的点Fδ-分子间键合相互作用分别为-0.62和-0.24 kcal mol(-1)。与BPEPE-F18分子形成的层状超分子结构中观察到的分子结构相似的另一种二聚体的几何结构,与一组三个Fδ-中心点-中心点-中心Fδ-分子间的相互作用类似。最稳定构象上方的相对能量为6.5 kcal mol(-1)。从后面的二聚体到类似的(C6F6)3三聚体,以及从三聚体到类似的(C6F6)(4)四聚体,后两个簇包含风车类型的F三角洲-中心点中心点中心点中心点F三角洲-分子间拓扑,我们标记了Delta E值从-0.94(二聚体)到-2.76(三聚体)到-4.49 kcal mol(-1)(四聚体)的优先增加,从而表明存在合作结合。能量分解分析表明,色散和极化是将C6F6分子以复杂构型聚集在一起的主要驱动力。虽然在分子间原子相互作用的量子电荷理论(QTAIM)和降低密度梯度方法应用于所有高分子化合物中发现的基于分子间键合相互作用的基于电荷密度的拓扑结果之间找到了合理的共识,但后一种方法的结果被发现过于模糊,特别是在(3,+ 1)环的临界点附近。 QTAIM的源函数分析表明,C6F6中带完全负电荷的氟原子可作为Fδ-中心点中心点-中心点Fδ键形成的汇。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号