Department of Chemistry, Indian Institute of Technology (BHU), Varanasi, 221005, India.
Division of Sciences, Krea University, Sri City, Andhra Pradesh, 517646, India.
Chemphyschem. 2022 Dec 16;23(24):e202200413. doi: 10.1002/cphc.202200413. Epub 2022 Sep 27.
Endohedral fullerenes have evinced much interest from the fundamental and applications points of view. However, given the nature of the weak interaction between the guest species and the host cage in these confined systems, the interaction energy values obtained using various theoretical methods, and different basis sets vary over a wide range. For example, the reported interaction energy for the HF@C system ranges from -2.5 kcal/mol to -14.9 kcal/mol. In the present manuscript, we report reliable interaction energy values for different endohedral fullerenes (He@C , Ne@C , Ar@C , Kr@C , H @C , HF@C , H O@C , NH @C , CH @C , Li @C , Na @C , and K @C ) obtained using the domain-based local pair natural orbital coupled-cluster singles, doubles, and perturbative triples (DLPNO-CCSD(T)) method and the def2-TZVP basis set. We believe that these energy values could be considered as benchmark values, and the performance of other quantum chemical methods could be assessed accordingly. Local energy decomposition analysis within the DLPNO-CCSD(T) framework is used to estimate the electrostatic, exchange, and dispersion components of the interaction energy for some of the endohedral fullerenes.
笼内富勒烯从基础和应用的角度引起了广泛关注。然而,鉴于客体物种和这些受限体系中主体笼之间的弱相互作用的性质,使用各种理论方法和不同基组得到的相互作用能值差异很大。例如,报道的 HF@C 体系的相互作用能范围为-2.5 kcal/mol 至-14.9 kcal/mol。在本手稿中,我们报告了使用基于域的局部对自然轨道耦合簇单双和微扰三(DLPNO-CCSD(T))方法和 def2-TZVP 基组获得的不同笼内富勒烯(He@C 、Ne@C 、Ar@C 、Kr@C 、H@C 、HF@C 、H2O@C 、NH3@C 、CH4@C 、Li@C 、Na@C 、和 K@C)的可靠相互作用能值。我们相信这些能量值可以被视为基准值,并且可以相应地评估其他量子化学方法的性能。在 DLPNO-CCSD(T)框架内使用局域能量分解分析来估算一些笼内富勒烯相互作用能的静电、交换和色散分量。