Institute of Chemistry, Saint Petersburg State University, 7/9 Universitetskaya Nab., 199034 Saint Petersburg, Russia.
M.V. Lomonosov Institute of Fine Chemical Technologies, MIREA-Russian Technological University, 86 Vernadskogo Pr, 119571 Moscow, Russia.
Molecules. 2021 May 23;26(11):3119. doi: 10.3390/molecules26113119.
Structures of three tetrahalophthalic anhydrides (TXPA: halogen = Cl (TCPA), Br (TBPA), I (TIPA)) were studied by X-ray diffraction, and several types of halogen bonds (HaB) and lone pair···π-hole (lp···πh) contacts were revealed in their structures. HaBs involving the central oxygen atom of anhydride group (further X···O(anhydride) were recognized in the structures of TCPA and TBPA. In contrast, for the O(anhydride) atom of TIPA, only interactions with the π system (π-hole) of the anhydride ring (further lp(O)···πh) were observed. Computational studies by a number of theoretical methods (molecular electrostatic potentials, the quantum theory of atoms in molecules, the independent gradient model, natural bond orbital analyses, the electron density difference, and symmetry-adapted perturbation theory) demonstrated that the X···O(anhydride) contacts in TCPA and TBPA and lp(O)···πh in TIPA are caused by the packing effect. The supramolecular architecture of isostructural TCPA and TBPA was mainly affected by X···O(acyl) and X···X HaBs, and, for TIPA, the main contribution provided I···I HaBs.
三种四卤邻苯二甲酸酐(TXPA:卤素= Cl(TCPA)、Br(TBPA)、I(TIPA))的结构通过 X 射线衍射进行了研究,其结构中揭示了几种类型的卤键(HaB)和孤对···π 孔(lp···πh)接触。在 TCPA 和 TBPA 的结构中,确认了涉及酐基团中心氧原子的 HaBs(进一步 X···O(酐)。相比之下,对于 TIPA 的 O(酐)原子,仅观察到与酐环的π系统(π 孔)的相互作用(进一步 lp(O)···πh)。通过多种理论方法(分子静电势、分子中原子的量子理论、独立梯度模型、自然键轨道分析、电子密度差和对称自适应微扰理论)的计算研究表明,TCPA 和 TBPA 中的 X···O(酐)接触和 TIPA 中的 lp(O)···πh 是由包装效应引起的。同构 TCPA 和 TBPA 的超分子结构主要受 X···O(酰基)和 X···X HaB 的影响,而对于 TIPA,则主要由 I···I HaB 提供。