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密度泛函理论预测激光染料与葫芦[7]脲的结合亲和力。

Density Functional Theory Prediction of Laser Dyes-Cucurbit[7]uril Binding Affinities.

作者信息

Petkova Vladislava, Dobrev Stefan, Kircheva Nikoleta, Nazarova Dimana, Nedelchev Lian, Nikolova Valya, Dudev Todor, Angelova Silvia

机构信息

Institute of Optical Materials and Technologies "Acad. J. Malinowski", Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.

University of Chemical Technology and Metallurgy, 8 St. Kliment Ohridski Blvd, 1756 Sofia, Bulgaria.

出版信息

Molecules. 2024 Sep 16;29(18):4394. doi: 10.3390/molecules29184394.

Abstract

Among a variety of diverse host molecules distinguished by specific characteristics, the cucurbit[n]uril (CB) family stands out, being widely known for the attractive properties of its representatives along with their increasingly expanding area of applications. The presented herewith density functional theory (DFT)-based study is inspired by some recent studies exploring CBs as a key component in multifunctional hydrogels with applications in materials science, thus considering CB-assisted supramolecular polymeric hydrogels (CB-SPHs), a new class of 3D cross-linked polymer materials. The research systematically investigates the inclusion process between the most applied representative of the cavitand family CB[7] and a series of laser dye molecules as guests, as well as the possible encapsulation of a model side chain from the photoanisotropic polymer PAZO and its sodium-containing salt. The obtained results shed light on the most significant factors that play a key role in the recognition process, such as binding mode, charge, and dielectric constant of the solvent. The observed findings provide valuable insights at a molecular level for the design of dye-CB[7] systems in various environments, with potential applications in intriguing and prosperous fields like photonics and material science.

摘要

在以特定特性区分的各种不同主体分子中,葫芦[n]脲(CB)家族脱颖而出,其成员具有吸引人的特性以及不断扩大的应用领域,因而广为人知。本文基于密度泛函理论(DFT)的研究受到了一些近期研究的启发,这些研究探索将CB作为多功能水凝胶的关键成分应用于材料科学,从而考虑了CB辅助的超分子聚合物水凝胶(CB-SPHs),这是一类新型的三维交联聚合物材料。该研究系统地研究了穴状配体家族中应用最广泛的代表CB[7]与一系列作为客体的激光染料分子之间的包合过程,以及光致各向异性聚合物PAZO及其钠盐的模型侧链的可能包封情况。所得结果揭示了在识别过程中起关键作用的最重要因素,如结合模式、电荷和溶剂的介电常数。观察到的结果为在各种环境中设计染料-CB[7]系统提供了分子水平的宝贵见解,在光子学和材料科学等有趣且繁荣的领域具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e678/11434600/d45c23ded7b2/molecules-29-04394-g001.jpg

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