Institute of Physics, University of Brasilia, Brasilia 70910-900, Brazil.
International Center for Condensed Matter Physics, University of Brasilia, CP 04455, Brasilia 70919-970, Brazil.
Molecules. 2021 Sep 9;26(18):5487. doi: 10.3390/molecules26185487.
X-ray structural determinations and computational studies were used to investigate halogen interactions in two halogenated oxindoles. Comparative analyses of the interaction energy and the interaction properties were carried out for Br···Br, C-H···Br, C-H···O and N-H···O interactions. Employing Møller-Plesset second-order perturbation theory (MP2) and density functional theory (DFT), the basis set superposition error (BSSE) corrected interaction energy (E(BSSE)) was determined using a supramolecular approach. The E(BSSE) results were compared with interaction energies obtained by Quantum Theory of Atoms in Molecules (QTAIM)-based methods. Reduced Density Gradient (RDG), QTAIM and Natural bond orbital (NBO) calculations provided insight into possible pathways for the intermolecular interactions examined. Comparative analysis employing the electron density at the bond critical points (BCP) and molecular electrostatic potential (MEP) showed that the interaction energies and the relative orientations of the monomers in the dimers may in part be understood in light of charge redistribution in these two compounds.
使用 X 射线结构测定和计算研究来研究两种卤代色酮中的卤素相互作用。对 Br···Br、C-H···Br、C-H···O 和 N-H···O 相互作用的相互作用能和相互作用性质进行了比较分析。采用 Møller-Plesset 二级微扰理论 (MP2) 和密度泛函理论 (DFT),通过超分子方法确定了基组叠加误差 (BSSE) 校正的相互作用能 (E(BSSE))。将 E(BSSE) 结果与基于量子理论原子在分子 (QTAIM) 的方法获得的相互作用能进行了比较。降低密度梯度 (RDG)、QTAIM 和自然键轨道 (NBO) 计算提供了对所研究的分子间相互作用的可能途径的深入了解。使用键临界点 (BCP) 和分子静电势 (MEP) 上的电子密度进行的比较分析表明,相互作用能和二聚体中单体的相对取向部分可以根据这两种化合物中的电荷重新分布来理解。