Zhang Shuai, Wu Jing-He, Cui Jia-Wu, Lu Cheng, Zhou Pan-Pan, Lu Zhi-Wen, Li Gen-Quan
Department of Physics, Nanyang Normal University, Nanyang, 473061, China.
J Mol Model. 2014 May;20(5):2242. doi: 10.1007/s00894-014-2242-4. Epub 2014 Apr 29.
The equilibrium geometries, growth patterns, stabilities, and electronic properties of bimetallic Be₂Si(n) (n = 1-11) clusters are systematically investigated at the B3LYP/6-311G(d) level of theory. Harmonic vibrational analysis has been performed to assure that the optimized geometries are stable. The optimized results suggest that the three-dimensional structures are observed for the most stable isomers of Be₂Si(n) clusters when n > 2. The calculated vertical ionization potential for the lowest-energy isomers are comparable to the experimental values of Si(n+2). According to the averaged binding energy, fragmentation energy, second-order energy difference and HOMO-LUMO gaps calculations, we identify that the Be₂Si₂ and Be₂Si₅ clusters are more stable, and Be atoms doping enhance the chemical reactivity of the Si n host. The natural population and natural electron configuration analyses indicate that the Be atoms possess positive charge at n = 1-5 but negative charge at n = 6-11. The chemical hardness of Be₂Si(n) clusters show three local maxima at n = 2, 5, and 9, whereas three local minima are found for the corresponding chemical potential, meaning these clusters are more stable than their neighboring cluster sizes.
在B3LYP/6-311G(d)理论水平上,系统地研究了双金属Be₂Si(n)(n = 1 - 11)团簇的平衡几何结构、生长模式、稳定性和电子性质。进行了谐波振动分析,以确保优化后的几何结构是稳定的。优化结果表明,当n > 2时,Be₂Si(n)团簇最稳定的异构体呈现三维结构。计算得到的最低能量异构体的垂直电离势与Si(n + 2)的实验值相当。根据平均结合能、裂解能、二阶能量差和HOMO-LUMO能隙计算,我们确定Be₂Si₂和Be₂Si₅团簇更稳定,并且Be原子掺杂增强了Si n主体的化学反应活性。自然布居和自然电子构型分析表明,Be原子在n = 1 - 5时带正电荷,而在n = 6 - 11时带负电荷。Be₂Si(n)团簇的化学硬度在n = 2、5和9处呈现三个局部最大值,而相应的化学势则有三个局部最小值,这意味着这些团簇比其相邻的团簇尺寸更稳定。