Mikajlo Elisabeth A, Dorsett Helen E, Ford Michael J
Department of Chemistry, Flinders University of South Australia, GPO Box 2100, Adelaide SA 5001, Australia.
J Chem Phys. 2004 Jun 8;120(22):10799-806. doi: 10.1063/1.1738635.
Measured and calculated band structures for the six lightest group-I and -II oxides are reported. Band structures have been measured using electron momentum spectroscopy, a technique that maps the ground-state occupied orbitals resolved both in energy and momentum. Measurements are compared with first-principles calculations carried out within the linear combination of atomic orbitals approximation using both Hartree-Fock (HF) and density functional (DFT) methods. Three DFT functionals are used representative of the local density approximation, the generalized gradient approximation, and a hybrid method incorporating exact exchange. The calculated O 2p bandwidths and O 2p-2s band gaps generally scale linearly with the inverse of the oxygen-oxygen separation squared, but consistently show an anomaly at Li(2)O. These trends, including the anomaly, are also observed in the experimental data. HF calculations consistently overestimate the oxygen 2p-2s band gap by almost a factor of two. Measured band gaps lie within the range of the three DFT functionals employed, with evidence that the description of exchange becomes more important as the cation size increases. Both HF and DFT calculations overestimate the oxygen valence bandwidths, with DFT giving more accurate predictions. Both observed and calculated bandwidths converge as the cation size increases, indicating that exchange-correlation effects become less important as the metallic ion becomes larger.
报道了六种最轻的第I族和第II族氧化物的测量和计算能带结构。使用电子动量谱测量能带结构,该技术可绘制出在能量和动量上均得到分辨的基态占据轨道。将测量结果与在原子轨道线性组合近似下使用哈特里-福克(HF)和密度泛函(DFT)方法进行的第一性原理计算进行了比较。使用了三种DFT泛函,分别代表局域密度近似、广义梯度近似以及一种包含精确交换的混合方法。计算得到的O 2p带宽和O 2p - 2s带隙通常与氧-氧间距平方的倒数呈线性比例关系,但在Li₂O处始终呈现异常。这些趋势,包括异常情况,在实验数据中也有观察到。HF计算始终将氧2p - 2s带隙高估了近两倍。测量得到的带隙处于所采用的三种DFT泛函的范围内,有证据表明随着阳离子尺寸的增加,交换作用的描述变得更加重要。HF和DFT计算都高估了氧价带宽,其中DFT给出了更准确的预测。随着阳离子尺寸的增加,观察到的和计算得到的带宽都趋于收敛,这表明随着金属离子变大,交换关联效应变得不那么重要。