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电化学、光物理、形态学和含氟轴向配体的多晶态锡(IV)卟啉的 DFT 研究。

Electrochemical, Photophysical, Morphological and DFT Study of Polymorphic Sn(IV)-Porphyrins Containing Fluorinated Axial Ligand.

机构信息

Amity Institute of Click Chemistry Research & Studies (AICCRS), Amity University, Noida, India.

Department of Chemistry, McGill University, 801 Sherbrooke St. West, Montreal, QCH3A0B8, Canada.

出版信息

Chem Asian J. 2022 Sep 1;17(17):e202200515. doi: 10.1002/asia.202200515. Epub 2022 Aug 3.

Abstract

In this study, we report the polymorphism of six coordinated Sn(IV)- tetrabromophenyl porphyrins axially armed with fluorine-substituted phenolate ligands (structural formula [Sn(TBrPP) (A ) ], where A is the axial ligand=3,5-difluoro phenol, compound 1). One form stabilizes in triclinic system (namely, 1α), and the other stabilizes in monoclinic system (namely, 1β). The two 1α and 1β polymorphs display distinct photophysical and morphological properties in the solid state. X-ray diffraction study reveals that these polymorphs 1α and 1β significantly differ in their supramolecular architecture, different axial phenolate conformations, and noncovalent interactions, which are responsible for their distinct solid-state properties. The crystal packing of these polymorphs dominates by intermolecular C-H⋅⋅⋅F, C-H⋅⋅⋅π and C-Br⋅⋅⋅F interhalogen interactions. Furthermore, the solid-state emission spectra of 1α showed red-shifted emission bands with respect to 1β, in addition the redox behavior of 1α is slightly different in comparison to 1β. Complementary theoretical studies with Hirshfeld surface analysis show the definite role of Br⋅⋅⋅F interhalogen interactions in the overall stability. Mapping the electrostatic potential isosurfaces with the aid of density functional theory in compound 1 clearly shows the presence of σ-hole, a requisite feature to show halogen interactions in the crystalline state. In addition, lattice energy and single point energy calculation shows that 1α was found to be energetically more favorable and thermodynamically more stable compare to 1β.

摘要

在这项研究中,我们报告了六个配位的 Sn(IV)-四溴苯基卟啉轴向配体为氟取代的酚盐(结构式[Sn(TBrPP)(A)],其中 A 是轴向配体=3,5-二氟苯酚,化合物 1)的多态性。一种形式稳定在三斜晶系(即 1α),另一种形式稳定在单斜晶系(即 1β)。这两种 1α 和 1β 多晶型物在固态中表现出明显不同的光物理和形态性质。X 射线衍射研究表明,这些多晶型物 1α 和 1β 在其超分子结构、不同的轴向酚盐构象和非共价相互作用方面有显著差异,这是它们不同的固态性质的原因。这些多晶型物的晶体堆积主要由分子间 C-H⋅⋅⋅F、C-H⋅⋅⋅π 和 C-Br⋅⋅⋅F 卤间相互作用主导。此外,1α 的固态发射光谱相对于 1β 显示出红移的发射带,此外,1α 的氧化还原行为与 1β 略有不同。用 Hirshfeld 表面分析进行的补充理论研究表明,Br⋅⋅⋅F 卤间相互作用在整体稳定性中起着确定的作用。在化合物 1 中,借助密度泛函理论绘制静电势能等位面图清楚地表明了σ-hole 的存在,这是在晶体状态下显示卤相互作用的必要特征。此外,晶格能和单点能计算表明,1α 比 1β 在能量上更有利,热力学上更稳定。

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