Ai Ling-Yan, Zhao Hui-Yan, Ma Hong-Man, Wang Jing, Liu Ying
Department of Physics and Hebei Advanced Thin Film Laboratory, Hebei Normal University, Shijiazhuang, 050024, Hebei, China.
North China University of Science and Technology, Tangshan, 063000, China.
Sci Rep. 2018 Mar 8;8(1):4167. doi: 10.1038/s41598-018-22381-y.
A stable T -symmetry TiC cage was systemically investigated using density functional theory. The structure of TiC is a hollow cage with twelve TiC subunit of three pentagons and one hexagon. The calculated frequencies are in the range 95.1 cm-1423.9 cm. There are no imaginary frequencies, showing its kinetic stability. Ab initio molecular dynamics simulations demonstrate that the topological structure of cage-like TiC cluster was well maintained when the effective temperature is up to 1139 K. The natural bond orbitals analysis shows that the d orbit of Ti atoms form four σ bonds with the neighboring four carbon atoms in each TiC subunit playing an important role in the cluster stability. The molecular frontier orbitals analysis indicates that TiC cage has a narrow HOMO-LUMO gap with metal-like property. It would be expected to enrich the species of hollow metal carbide clusters.
利用密度泛函理论对一种具有稳定T对称性的TiC笼进行了系统研究。TiC的结构是一个由三个五边形和一个六边形组成的十二个TiC亚基的空心笼。计算得到的频率范围为95.1 cm-1至423.9 cm。没有虚频,表明其动力学稳定性。从头算分子动力学模拟表明,当有效温度高达1139 K时,笼状TiC团簇的拓扑结构得到了很好的保持。自然键轨道分析表明,每个TiC亚基中Ti原子的d轨道与相邻的四个碳原子形成四个σ键,这对团簇稳定性起着重要作用。分子前沿轨道分析表明,TiC笼具有较窄的HOMO-LUMO能隙,具有类金属性质。有望丰富空心金属碳化物团簇的种类。