Ding Li Ping, Zhang Fang Hui, Zhu Yong Sheng, Lu Cheng, Kuang Xiao Yu, Lv Jian, Shao Peng
Department of Optoelectronic Science &Technology, College of Science, Shaanxi University of Science &Technology, Xian, 710021, China.
Department of Physics, Nanyang Normal University, Nanyang, 473061, China.
Sci Rep. 2015 Nov 3;5:15951. doi: 10.1038/srep15951.
The structural and electronic properties for the global minimum structures of medium-sized neutral, anionic and cationic Sin(μ) (n = 20-30, μ = 0, -1 and +1) clusters have been studied using an unbiased CALYPSO structure searching method in conjunction with first-principles calculations. A large number of low-lying isomers are optimized at the B3PW91/6-311 + G* level of theory. Harmonic vibrational analysis has been performed to assure that the optimized geometries are stable. The growth behaviors clearly indicate that a structural transition from the prolate to spherical-like geometries occurs at n = 26 for neutral silicon clusters, n = 27 for anions and n = 25 for cations. These results are in good agreement with the available experimental and theoretical predicted findings. In addition, no significant structural differences are observed between the neutral and cation charged silicon clusters with n = 20-24, both of them favor prolate structures. The HOMO-LUMO gaps and vertical ionization potential patterns indicate that Si22 is the most chemical stable cluster, and its dynamical stability is deeply discussed by the vibrational spectra calculations.
利用无偏CALYPSO结构搜索方法结合第一性原理计算,研究了中等尺寸中性、阴离子和阳离子Sin(μ)(n = 20 - 30,μ = 0、-1和 +1)团簇全局最小结构的结构和电子性质。在B3PW91/6 - 311 + G*理论水平下优化了大量低能异构体。进行了简谐振动分析以确保优化后的几何结构是稳定的。生长行为清楚地表明,对于中性硅团簇,在n = 26时发生从长椭球形到类球形几何结构的转变;对于阴离子,在n = 27时发生转变;对于阳离子,在n = 25时发生转变。这些结果与现有的实验和理论预测结果高度吻合。此外,在n = 20 - 24的中性和带正电的硅团簇之间未观察到明显的结构差异,它们都倾向于长椭球结构。最高占据分子轨道 - 最低未占据分子轨道能隙和垂直电离势模式表明Si22是化学稳定性最高的团簇,并通过振动光谱计算深入讨论了其动力学稳定性。