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环双(对-亚甲基-胡椒嗪-paraquat-p-亚苯基)包合物中的自由基对相互作用和给体-受体相互作用。

Radical Pairing Interactions and Donor-Acceptor Interactions in Cyclobis(paraquat-p-phenylene) Inclusion Complexes.

机构信息

Fujian Provincial Key Laboratory of Theoretical and Computational Chemistry, The State Key Laboratory of Physical Chemistry of Solid Surfaces, and College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China.

出版信息

Molecules. 2023 Feb 22;28(5):2057. doi: 10.3390/molecules28052057.

Abstract

Understanding molecular interactions in mechanically interlocked molecules (MIMs) is challenging because they can be either donor-acceptor interactions or radical pairing interactions, depending on the charge states and multiplicities in the different components of the MIMs. In this work, for the first time, the interactions between cyclobis(paraquat-p-phenylene) (abbreviated as CBPQT ( = 0-4)) and a series of recognition units (RUs) were investigated using the energy decomposition analysis approach (EDA). These RUs include bipyridinium radical cation (BIPY), naphthalene-1,8:4,5-bis(dicarboximide) radical anion (NDI), their oxidized states (BIPY and NDI), neutral electron-rich tetrathiafulvalene (TTF) and neutral bis-dithiazolyl radical (BTA). The results of generalized Kohn-Sham energy decomposition analysis (GKS-EDA) reveal that for the CBPQT···RU interactions, correlation/dispersion terms always have large contributions, while electrostatic and desolvation terms are sensitive to the variation in charge states in CBPQT and RU. For all the CBPQT···RU interactions, desolvation terms always tend to overcome the repulsive electrostatic interactions between the CBPQT cation and RU cation. Electrostatic interaction is important when RU has the negative charge. Moreover, the different physical origins of donor-acceptor interactions and radical pairing interactions are compared and discussed. Compared to donor-acceptor interactions, in radical pairing interactions, the polarization term is always small, while the correlation/dispersion term is important. With regard to donor-acceptor interactions, in some cases, polarization terms could be quite large due to the electron transfer between the CBPQT ring and RU, which responds to the large geometrical relaxation of the whole systems.

摘要

理解机械互锁分子(MIMs)中的分子相互作用具有挑战性,因为它们可能是给体-受体相互作用,也可能是自由基对相互作用,这取决于 MIMs 不同组分的电荷状态和多重性。在这项工作中,首次使用能量分解分析方法(EDA)研究了环双(对醌-对亚苯基)(简称 CBPQT(=0-4))与一系列识别单元(RUs)之间的相互作用。这些 RUs 包括联吡啶自由基阳离子(BIPY)、萘-1,8:4,5-双(二羧酸酰亚胺)自由基阴离子(NDI)、它们的氧化态(BIPY 和 NDI)、中性富电子四硫富瓦烯(TTF)和中性双二噻唑基自由基(BTA)。广义 Kohn-Sham 能量分解分析(GKS-EDA)的结果表明,对于 CBPQT···RU 相互作用,相关/色散项总是有很大的贡献,而静电和去溶剂化项对 CBPQT 和 RU 中电荷状态的变化很敏感。对于所有的 CBPQT···RU 相互作用,去溶剂化项总是倾向于克服 CBPQT 阳离子和 RU 阳离子之间的排斥静电相互作用。当 RU 带负电荷时,静电相互作用很重要。此外,还比较和讨论了给体-受体相互作用和自由基对相互作用的不同物理起源。与给体-受体相互作用相比,在自由基对相互作用中,极化项总是很小,而相关/色散项很重要。对于给体-受体相互作用,在某些情况下,由于 CBPQT 环和 RU 之间的电子转移,极化项可能会相当大,这反映了整个系统的大几何弛豫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b131/10004262/6883f5dd5da4/molecules-28-02057-g001.jpg

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