Scafetta Mark D, May Steven J
Department of Materials Science and Engineering, Drexel University, Philadelphia, PA 19104, USA.
Phys Chem Chem Phys. 2017 Apr 19;19(16):10371-10376. doi: 10.1039/c7cp01104k.
We have investigated the effect of La and Fe deficiency on the c-axis lattice parameter and optical absorption in LaFeO films deposited by oxide MBE. La deficient films display minimal changes in optical and structural properties compared with stoichiometric LaFeO, even with relatively large cation vacancy concentrations (∼22%). Fe deficient films show a linear increase in c-axis parameter with increasing Fe vacancy concentration. The optical absorption coefficient is reduced for Fe deficient films over the spectral range from 1.2 to 5.0 eV. This leads to a relatively simple and effective method to quantify the approximate Fe deficiency in LaFeO. Minimal changes in optical and structural properties are observed when cation deficient films are exposed to strongly oxidizing (ozone annealing) conditions. This indicates a strong accompaniment of charge balancing oxygen vacancies to maintain a nominal Fe valence state, acting to stabilize the band structure even in the presence of significant cation off-stoichiometry.
我们研究了镧(La)和铁(Fe)缺乏对通过氧化物分子束外延(MBE)沉积的LaFeO薄膜的c轴晶格参数和光吸收的影响。与化学计量比的LaFeO相比,即使具有相对较高的阳离子空位浓度(约22%),La缺乏的薄膜在光学和结构性质上的变化也最小。Fe缺乏的薄膜随着Fe空位浓度的增加,c轴参数呈线性增加。在1.2至5.0 eV的光谱范围内,Fe缺乏的薄膜的光吸收系数降低。这导致了一种相对简单有效的方法来量化LaFeO中近似的Fe缺乏情况。当阳离子缺乏的薄膜暴露在强氧化(臭氧退火)条件下时,观察到光学和结构性质的变化最小。这表明电荷平衡氧空位强烈伴随,以维持名义上的Fe价态,即使在存在显著的阳离子非化学计量比的情况下,也有助于稳定能带结构。