Jin Yuanyuan, Lu Shengjie, Hermann Andreas, Kuang Xiaoyu, Zhang Chuanzhao, Lu Cheng, Xu Hongguang, Zheng Weijun
Department of Physics and Optoelectronic Engineering, Yangtze University, Jingzhou 434023, China.
Department of Physics, Nanyang Normal University, Nanyang 473061, China.
Sci Rep. 2016 Jul 21;6:30116. doi: 10.1038/srep30116.
We present a combined experimental and theoretical study of ruthenium doped germanium clusters, RuGen(-) (n = 3-12), and their corresponding neutral species. Photoelectron spectra of RuGen(-) clusters are measured at 266 nm. The vertical detachment energies (VDEs) and adiabatic detachment energies (ADEs) are obtained. Unbiased CALYPSO structure searches confirm the low-lying structures of anionic and neutral ruthenium doped germanium clusters in the size range of 3 ≤ n ≤ 12. Subsequent geometry optimizations using density functional theory (DFT) at PW91/LANL2DZ level are carried out to determine the relative stability and electronic properties of ruthenium doped germanium clusters. It is found that most of the anionic and neutral clusters have very similar global features. Although the global minimum structures of the anionic and neutral clusters are different, their respective geometries are observed as the low-lying isomers in either case. In addition, for n > 8, the Ru atom in RuGen(-/0) clusters is absorbed endohedrally in the Ge cage. The theoretically predicted vertical and adiabatic detachment energies are in good agreement with the experimental measurements. The excellent agreement between DFT calculations and experiment enables a comprehensive evaluation of the geometrical and electronic structures of ruthenium doped germanium clusters.
我们展示了对钌掺杂锗簇合物RuGen⁻(n = 3 - 12)及其相应中性物种的实验与理论相结合的研究。在266nm波长下测量了RuGen⁻簇合物的光电子能谱,获得了垂直脱附能(VDEs)和绝热脱附能(ADEs)。无偏CALYPSO结构搜索确定了3≤n≤12尺寸范围内阴离子和中性钌掺杂锗簇合物的低能结构。随后在PW91/LANL2DZ水平上使用密度泛函理论(DFT)进行几何优化,以确定钌掺杂锗簇合物的相对稳定性和电子性质。发现大多数阴离子和中性簇合物具有非常相似的整体特征。尽管阴离子和中性簇合物的全局最小结构不同,但在两种情况下它们各自的几何结构均为低能异构体。此外,对于n > 8,RuGen⁻/⁰簇合物中的Ru原子以包埋方式吸附在Ge笼中。理论预测的垂直和绝热脱附能与实验测量结果吻合良好。DFT计算与实验之间的出色吻合使得能够对钌掺杂锗簇合物的几何和电子结构进行全面评估。