School of Material Science and Engineering, Southwest University of Science and Technology, Mianyang, Sichuan, People's Republic of China.
J Mol Model. 2011 Feb;17(2):275-9. doi: 10.1007/s00894-010-0719-3. Epub 2010 May 5.
Density functional theory BLYP/DNP was employed to optimize a series of fullerenes and their holmium endohedral compounds, including C(20), Ho@C(20), Ho(3+)@C(20), C(60), Ho@C(60), Ho(3+)@C(60),C(70), Ho@C(70), Ho(3+)@C(70) C(78), Ho@C(78), Ho(3+)@C(78), C(82),Ho@C(82) and Ho(3+)@C(82). DFT semi core pseudospot approximation was taken into consideration in the calculations of the element holmium because of its particular electronic structure. Fullerenes and their holmium endohedral compounds' aromaticity were studied in terms of structural criteria, energetic criteria, and reactivity criteria. The results indicate that the aromaticity of fullerenes was reduced when a holmium atom was introduced into the carbon cage, and the endohedral fullerenes' reactive activity enhance; but the aromaticity of the carbon cage increased when a Ho(3+) cation was encapsulated into a fullerene. Calculations of aromaticity and stability indicate that two paths can lead to the similar aim of preparing holmium endohedral fullerenes; that is, they can form from either a holmium atom or a holmium cation (Ho(3+)) reacting with fullerenes, respectively, and the latter is more favorable.
密度泛函理论 BLYP/DNP 被用于优化一系列富勒烯及其钬包合物,包括 C(20)、Ho@C(20)、Ho(3+)@C(20)、C(60)、Ho@C(60)、Ho(3+)@C(60)、C(70)、Ho@C(70)、Ho(3+)@C(70)、C(78)、Ho@C(78)、Ho(3+)@C(78)、C(82)、Ho@C(82)和 Ho(3+)@C(82)。由于其特殊的电子结构,在计算元素钬时采用了 DFT 半芯赝势近似。根据结构标准、能量标准和反应性标准研究了富勒烯及其钬包合物的芳香性。结果表明,当一个钬原子被引入碳笼中时,富勒烯的芳香性降低,内包富勒烯的反应活性增强;但是当一个 Ho(3+)阳离子被包入富勒烯中时,碳笼的芳香性增加。芳香性和稳定性的计算表明,有两条途径可以达到制备钬包富勒烯的相似目标;也就是说,它们可以分别由一个钬原子或一个钬阳离子(Ho(3+))与富勒烯反应形成,后者更为有利。