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呋喃团簇的结构、结合能和非共价相互作用。

Structures, binding energies and non-covalent interactions of furan clusters.

机构信息

Department of Chemistry, University of the Free State, PO BOX 339, Bloemfontein, 9300, South Africa; Department of Physics, Faculty of Science, University of Maroua, PO BOX 46, Maroua, Cameroon.

Department of Chemistry, University of the Free State, PO BOX 339, Bloemfontein, 9300, South Africa; Department of Chemistry, UiT - The Arctic University of Norway, N-9037 Tromsø, Norway.

出版信息

J Mol Graph Model. 2022 Mar;111:108102. doi: 10.1016/j.jmgm.2021.108102. Epub 2021 Dec 8.

Abstract

Understanding of the furan solvent is subjected to the knowledge of the structures of the furan clusters and interactions taking place therein. Although, furan clusters can be very important to determine the dynamics and the properties of the furan solvent, there has been only a few investigations reported on furan dimer. In this work, we have explored the potential energy surfaces (PESs) of the furan clusters using two incremental levels of theory. Structures have been initially generated using classical molecular dynamics followed by full optimization at the MP2/aug-cc-pVDZ level of theory. The results show that the most stable structure of the furan dimer has a stacking configuration while that of the trimer has a cyclic configuration. We have noted that the structures of the furan tetramer have no definite configurations. In addition, we have performed a quantum theory of atoms in molecule (QTAIM) analysis to identify all possible non-covalent interactions of the furan clusters. The results show that six different types of non-covalent interactions can be identified in furan clusters. We have noted that the CH⋯C and CH⋯O hydrogen bondings are the strongest non-covalent interactions while the H⋯H bonding interaction is found to be the weakest. Furthermore, we have assessed the performance of ten DFT functionals in calculating the binding energies of the furan clusters. The ten DFT functionals (M05, M05-2X, M06, M06-2X, M08HX, PBE0, ωB97XD, PW6B95D3, APFD and MN15) have been benchmarked to DLPNO-CCSD(T)/CBS. The functionals M05-2X and M06 are recommended for further affordable investigations of the furan clusters.

摘要

对呋喃溶剂的理解取决于对呋喃团簇结构及其相互作用的认识。尽管呋喃团簇对于确定呋喃溶剂的动力学和性质非常重要,但仅有少数关于呋喃二聚体的研究报道。在这项工作中,我们使用两种增量理论水平探索了呋喃团簇的势能表面(PES)。结构最初是使用经典分子动力学生成的,然后在 MP2/aug-cc-pVDZ 理论水平上进行完全优化。结果表明,呋喃二聚体的最稳定结构具有堆积构型,而三聚体具有环状构型。我们注意到,呋喃四聚体的结构没有确定的构型。此外,我们还进行了原子在分子中的量子理论(QTAIM)分析,以确定呋喃团簇的所有可能的非共价相互作用。结果表明,可以在呋喃团簇中识别出六种不同类型的非共价相互作用。我们注意到,CH⋯C 和 CH⋯O 氢键是最强的非共价相互作用,而 H⋯H 键合相互作用被发现是最弱的。此外,我们评估了十种 DFT 泛函在计算呋喃团簇结合能方面的性能。十种 DFT 泛函(M05、M05-2X、M06、M06-2X、M08HX、PBE0、ωB97XD、PW6B95D3、APFD 和 MN15)已与 DLPNO-CCSD(T)/CBS 进行了基准测试。推荐使用 M05-2X 和 M06 泛函进一步进行呋喃团簇的经济实惠研究。

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