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首页> 外文期刊>Molecular simulation >MP2, DFT and DFT-D study of the dimers of diazanaphthalenes: a comparative study of their structures, stabilisation and binding energies
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MP2, DFT and DFT-D study of the dimers of diazanaphthalenes: a comparative study of their structures, stabilisation and binding energies

机译:重氮萘二聚体的MP2,DFT和DFT-D研究:结构,稳定性和结合能的比较研究

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Diazanaphthalenes (DAPs) are a broad class of N-heteroaromatic compounds with several technological and biological applications. Some of these applications are attributed to the ability of DAP molecules to form associated dimers through non-covalent interactions. A study of the types and strength of the interactions involved is crucial for understanding the preferred geometries and energetics of the dimers. In this study, the dimers of five DAPs are investigated by means of M?ller-Plesset second order perturbation theory, hybrid meta-GGA [density functional theory methods (DFT): DFT/MPWB1K, DFT/M05-2X and DFT/M06-2X] and DFT dispersion-corrected (DFT-D/vB97XD) methods to elucidate their dimers' preferred geometries, relative energies and nature of the interactions between monomer units. The results indicate that the monomer units of the dimers are held by either intermolecular hydrogen bonds or π· · ·π stacking interactions, and that the preferred dimers are those in which the monomer units interact through π· · ·π stacking interactions. A comparison across structures suggests that the position of the N atom in the ring has significant role in determining the relative energy and binding strength of the dimers. A comparison among the different methods utilised for the study indicates that DFT/ M06-2X method provides binding energies that are close to those of DFT-CCSD(T) correction scheme and could therefore be considered as the best method for describing the binding properties of DAP dimers.
机译:二氮杂萘(DAP)是一类广泛的N-杂芳族化合物,具有多种技术和生物学应用。这些应用中的一些归因于DAP分子通过非共价相互作用形成相关二聚体的能力。对于所涉及的相互作用的类型和强度的研究对于理解二聚体的优选几何形状和能量学至关重要。在这项研究中,通过M?ller-Plesset二阶摄动理论,混合meta-GGA [密度泛函理论方法(DFT):DFT / MPWB1K,DFT / M05-2X和DFT / M06)研究了五个DAP的二聚体-2X]和DFT色散校正(DFT-D / vB97XD)方法来阐明其二聚体的优选几何形状,相对能量和单体单元之间相互作用的性质。结果表明,二聚体的单体单元通过分子间氢键或π··π堆积相互作用被保持,优选的二聚体是单体单元通过π··π堆积相互作用相互作用的单体。跨结构的比较表明,环中N原子的位置在确定二聚体的相对能量和结合强度方面具有重要作用。本研究中使用的不同方法之间的比较表明,DFT / M06-2X方法提供的结合能接近DFT-CCSD(T)校正方案的结合能,因此可以被视为描述DFT / CCSD(T)结合性质的最佳方法。 DAP二聚体。

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