Laboratory of Solid State Physics and Magnetism, KU Leuven, Leuven, Belgium.
Phys Chem Chem Phys. 2013 Apr 14;15(14):5151-62. doi: 10.1039/c3cp44395g.
We present a combined theoretical and experimental investigation of neutral and cationic lithium doped germanium clusters, GenLim (n = 5-10; m = 1-4). The vertical ionization energies and ionization thresholds are derived from threshold photoionization efficiency curves in the 4.68-6.24 eV range and are compared with calculated vertical and adiabatic ionization energies for the lowest energy isomers obtained using DFT computations. The agreement between experimental and computed values supports the identification of the ground state structures. Charge population analysis shows that lithium transfers its valence electron to the Gen hosts to form Gen(mδ-)-mLi(δ+) and Gen((mδ(-)+1))-mLi(δ+) complexes. This is also illustrated by the strong correlation between the size dependent lithium adsorption energies in GenLi and the Gen electron affinities. Neutral GenLim clusters are formed by adsorbing lithium atoms on either triangular or rhombic faces of the Gen framework with the lithium atoms tending to avoid each other. The chemical bonding phenomena of clusters are analyzed in detail using the densities of states and molecular orbitals.
我们对中性和阳离子锂掺杂锗团簇 GenLim(n = 5-10;m = 1-4)进行了理论和实验的综合研究。垂直电离能和电离阈从 4.68-6.24 eV 范围内的阈值光电离效率曲线中得出,并与使用 DFT 计算得出的最低能量异构体的垂直和绝热电离能进行了比较。实验值和计算值之间的一致性支持了对基态结构的识别。电荷分布分析表明,锂将其价电子转移到 Gen 主体上,形成 Gen(mδ-)-mLi(δ+)和 Gen((mδ(-)+1))-mLi(δ+)配合物。这也说明了 GenLi 中锂的吸附能与 Gen 的电子亲合能之间的强烈相关性。中性 GenLim 团簇是通过在 Gen 骨架的三角形或菱形面上吸附锂原子形成的,锂原子倾向于相互避开。使用态密度和分子轨道详细分析了团簇的化学键现象。