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含2,2'-联吡啶刚性核的[2]轮烷分子穿梭体的量子拓扑原子轨道分析

QTAIM Analysis of a [2]Rotaxane Molecular Shuttle with a 2,2'-Bipyridyl Rigid Core.

作者信息

Zazza Costantino, Sanna Nico, Borocci Stefano, Grandinetti Felice

机构信息

Department for Innovation in Biological Agro-food and Forest Systems, Università della Tuscia (DIBAF), L.go dell'Università, s.n.c., 01100, Viterbo, Italy.

Istituto per la Scienza e Tecnologia dei Plasmi del CNR (ISTP), Via G. Amendola 122/D, 70126, Bari, Italy.

出版信息

Chemphyschem. 2025 Jun 23;26(12):e202500074. doi: 10.1002/cphc.202500074. Epub 2025 Apr 21.

Abstract

Chemical contacts responsible for the supramolecular assembly of a rigid H-shaped [2]rotaxane molecular shuttle composed of a 24-crown-8(24C8) macrocycle on a molecular thread containing two benzimidazole (Bzi) recognition sites and a central 2,2'-bipyridyl (Bipy) rigid core are analytically addressed by combining the Quantum Theory of Atoms in Molecules (QTAIM) with density functional theory (DFT). In this respect, the available crystallographic structure-CCDC number 2248267-is taken as a reference condition for addressing the nature of the chemical interactions finely modulating the shuttling of the 24C8 between Bzi stations. Moreover, previous DFT computations (Chem. Sci., 2023, 14, 7215) are extended over a supercomputing environment to address the proposed ligand exchange mechanism involving DMF solvent molecules and promoting the observed shuttling process upon the addition of Zn(II) cations. To this end, converged DFT wavefunctions are fully analyzed by means of electron density ρ(r) and local electronic energy density-H(r)-descriptors; interestingly, the derived covalent versus noncovalent interaction patterns shed some light on the mutual position of the macrocycle along the axle following the coordination of Zn(II) ions in DMF solvent.

摘要

通过将分子中的原子量子理论(QTAIM)与密度泛函理论(DFT)相结合,对一种刚性H形[2]轮烷分子穿梭体的超分子组装中的化学接触进行了分析,该穿梭体由一个24-冠-8(24C8)大环在含有两个苯并咪唑(Bzi)识别位点和一个中心2,2'-联吡啶(Bipy)刚性核的分子链上构成。在这方面,将现有的晶体结构——剑桥晶体学数据中心编号2248267——作为参考条件,以研究精细调节24C8在Bzi位点之间穿梭的化学相互作用的性质。此外,先前的DFT计算(《化学科学》,2023年,第14卷,第7215页)在超级计算环境中进行了扩展,以研究涉及DMF溶剂分子并在加入Zn(II)阳离子后促进观察到的穿梭过程的拟配体交换机制。为此,通过电子密度ρ(r)和局部电子能量密度-H(r)-描述符对收敛的DFT波函数进行了全面分析;有趣的是,在DMF溶剂中Zn(II)离子配位后,所推导的共价与非共价相互作用模式揭示了大环沿轴的相互位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2d2/12188175/ce020dfc015e/CPHC-26-e202500074-g005.jpg

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