Roztoczyńska Agnieszka, Kozłowska Justyna, Lipkowski Paweł, Bartkowiak Wojciech
Department of Physical and Quantum Chemistry, Wrocław University of Technology, Wybrzeże Wyspiańskiego 27, PL - 50370 Wrocław, Poland.
Phys Chem Chem Phys. 2016 Jan 28;18(4):2417-27. doi: 10.1039/c5cp04153h.
In this theoretical work we analyze the noncovalent interactions of molecular complexes formed between the hydrogen bonded HF dimer and single-walled carbon nanotubes (SWCNTs) of different diameters. In particular, the interaction energies of: (i) spatially confined hydrogen fluoride molecules and (ii) HF dimer and the exterior or interior of SWCNTs are investigated. The computations are carried out in a supermolecular manner using the M06-2X exchange-correlation functional. In order to establish the influence of mutual orientation of the hydrogen fluoride dimer and molecular carbon cages on the analyzed energetic parameters energy scans are performed. Furthermore, changes in the charge distribution of the investigated endo- and exohedral complexes are studied employing the Natural Bond Orbital analysis. Among others, the position of the HF dimer with respect to the carbon cages proves to have a significant influence on the analyzed quantities. The results of our study also indicate that the HF dimer interacts stronger with the interior rather than the exterior of SWCNTs. Moreover, a substantial enhancement of the basis set superposition error is disclosed.
在这项理论研究中,我们分析了氢键结合的HF二聚体与不同直径的单壁碳纳米管(SWCNT)形成的分子复合物的非共价相互作用。具体而言,研究了:(i)空间受限的氟化氢分子以及(ii)HF二聚体与SWCNT外部或内部的相互作用能。计算采用超分子方法,使用M06 - 2X交换相关泛函进行。为了确定氟化氢二聚体与分子碳笼的相互取向对分析的能量参数的影响,进行了能量扫描。此外,采用自然键轨道分析研究了所研究的内包和外包络合物电荷分布的变化。其中,HF二聚体相对于碳笼的位置被证明对所分析的量有显著影响。我们的研究结果还表明,HF二聚体与SWCNT内部的相互作用比与外部的更强。此外,还揭示了基组叠加误差的显著增强。