论文标题
SR $ _2 $ CONBO $ _6 $薄膜的结构,运输,光学和电子特性
Structural, transport, optical and electronic properties of Sr$_2$CoNbO$_6$ thin films
论文作者
论文摘要
我们研究了底物诱导的菌株对SR $ _2 $ CONBO $ _6 $ Double Perovskite薄膜的结构,传输,光学和电子特性的影响。相互的空间映射,$ ϕ $ -SCAN和高分辨率$θ$ -2 $θ$ X射线衍射模式的扫描表明,沉积在各种单晶陶瓷底物上的膜的外延性质和高质量。随着压缩应变的增加,观察到直流电子电导率的系统增强,而在拉伸应变的情况下,急剧减少了,这进一步由费米水平附近的活化能和状态密度变化进一步支持。从两个不同的吸收带中提取的光条间隙在可见的新红外光谱中观察到,在压缩应变的情况下显示出非单调的行为,同时通过拉伸菌株显着增强。与散装SR $ _2 $ CONBO $ _6 $(CO $^{3+} $和NB $^{5+} $)不同,我们观察到X射线光发射光谱光谱测量值的2+,3+和4+和Tetravalent NB(4 $ D^1 $)的不同价状态。此外,由于CO/NB-O-O键的共价特征增强,平均氧气价降低了压缩应变。有趣的是,我们在这些薄膜中观察到尖锐的拉曼活性模式,这表明与整体相比,结构排序的增强显着增强。
We study the effect of substrate induced strain on the structural, transport, optical and electronic properties of Sr$_2$CoNbO$_6$ double perovskite thin films. The reciprocal space mapping, $ϕ$-scan and high-resolution $θ$-2$θ$ scans of x-ray diffraction patterns suggest the epitaxial nature and high-quality of the films deposited on various single crystal ceramic substrates. A systematic enhancement in the dc electronic conductivity is observed with increase in the compressive strain, while a sharp reduction in case of tensile strain, which are further supported by change in the activation energy and density of states near the Fermi level. The optical band gap extracted from two distinct absorption bands, observed in the visible-near infrared spectroscopy show a non-monotonic behavior in case of compressive strain while significant enhancement with tensile strain. Unlike the bulk Sr$_2$CoNbO$_6$ (Co$^{3+}$ and Nb$^{5+}$), we observe different valence states of Co namely 2+, 3+ and 4+, and tetravalent Nb (4$d^1$) in the x-ray photoemission spectroscopy measurements. Moreover, a reduction in the average oxygen valency with the compressive strain due to enhancement in the covalent character of Co/Nb--O bond is evident. Interestingly, we observe sharp Raman active modes in these thin films, which indicates a significant enhancement in structural ordering as compared to the bulk.