Balasubramani Sree Ganesh, Singh Devendra, Swathi R S
School of Chemistry, Indian Institute of Science Education and Research Thiruvananthapuram (IISER-TVM), Kerala 695016, India.
J Chem Phys. 2014 Nov 14;141(18):184304. doi: 10.1063/1.4900963.
The energetics for the interaction of the noble gas atoms with the carbon nanotubes (CNTs) are investigated using an analytical model and density functional theory calculations. Encapsulation of the noble gas atoms, He, Ne, Ar, Kr, and Xe into CNTs of various chiralities is studied in detail using an analytical model, developed earlier by Hill and co-workers. The constrained motion of the noble gas atoms along the axes of the CNTs as well as the off-axis motion are discussed. Analyses of the forces, interaction energies, acceptance and suction energies for the encapsulation enable us to predict the optimal CNTs that can encapsulate each of the noble gas atoms. We find that CNTs of radii 2.98 - 4.20 Å (chiral indices, (5,4), (6,4), (9,1), (6,6), and (9,3)) can efficiently encapsulate the He, Ne, Ar, Kr, and Xe atoms, respectively. Endohedral adsorption of all the noble gas atoms is preferred over exohedral adsorption on various CNTs. The results obtained using the analytical model are subsequently compared with the calculations performed with the dispersion-including density functional theory at the M06 - 2X level using a triple-zeta basis set and good qualitative agreement is found. The analytical model is however found to be computationally cheap as the equations can be numerically programmed and the results obtained in comparatively very less time.
利用解析模型和密度泛函理论计算研究了稀有气体原子与碳纳米管(CNT)相互作用的能量学。使用Hill及其同事早些时候开发的解析模型,详细研究了将稀有气体原子He、Ne、Ar、Kr和Xe封装到各种手性的碳纳米管中的情况。讨论了稀有气体原子沿碳纳米管轴的受限运动以及离轴运动。对封装的力、相互作用能、接纳和吸引能的分析使我们能够预测能够封装每种稀有气体原子的最佳碳纳米管。我们发现半径为2.98 - 4.20 Å(手性指数为(5,4)、(6,4)、(9,1)、(6,6)和(9,3))的碳纳米管可以分别有效地封装He、Ne、Ar、Kr和Xe原子。在各种碳纳米管上,所有稀有气体原子的内包吸附都优于外包吸附。随后将使用解析模型获得的结果与在M06 - 2X水平上使用三重ζ基组进行的含色散密度泛函理论计算结果进行比较,发现定性吻合良好。然而,发现解析模型计算成本低,因为方程可以进行数值编程,并且在相对较短的时间内就能得到结果。