A Computational Study of Physical Properties of the Smallest Fullerene, C20 Nanoparticle

被引:1
|
作者
Khataee, H. R. [1 ]
Liew, A. W. C. [1 ]
Zhong, Y. [2 ]
Hanifehpour, Y. [3 ]
Joo, S. W. [3 ]
机构
[1] Griffith Univ, Sch Informat & Commun Technol, Nathan, Qld 4222, Australia
[2] RMIT Univ, Sch Aerosp Mech & Mfg Engn, Bundoora, Vic 3083, Australia
[3] Yeungnam Univ, Sch Mech Engn, WCU Nano Res Ctr, Kyongsan 712749, South Korea
基金
新加坡国家研究基金会;
关键词
C-20; Nanoparticle; Graph Algorithms; Computational Nanotechnology; WIENER INDEX; HARARY INDEX; NANOMOTOR; POLYNOMIALS; C-60;
D O I
10.1166/jctn.2013.3147
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Computational nanotechnology provides theoretical understanding of complex nanoparticles properties and may enlighten their potential applications. In this paper, we use graph algorithms based on the dynamic programming to develop a software system which computes a set of optimal physical properties of the C-20 nanoparticle. The computational results of our developed software system have not been reported previously. C-20 nanoparticle is the smallest and simplest fullerene composed of twenty equivalent carbon atoms arranged in a cage structural form. The twenty carbon atoms of C-20 nanoparticle are also arranged in two other major structures: bowl and ring. The study considers all three major structures of C-20 nanoparticle and computes their physical indices including Wiener, hyper-Wiener, Harary and reciprocal Wiener. The Hosoya and hyper-Hosoya polynomials of the cage, bowl and ring structures of C-20 nanoparticle have been also computed. The accuracy of the computational results was proved with the mathematical equations between the indices and polynomials. Our computational results also showed good agreement with the physical properties of the cage, bowl and ring structures of C-20 nanoparticle.
引用
收藏
页码:1908 / 1913
页数:6
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