Optical, Dielectric and Optoelectronic Properties of Spray Deposited Cu-doped Fe2O3 Thin Films

A. Fasasi, E. Ajenifuja, E. Osagie, L. Animashaun, Abiodun Eyitayo Adeoye, E. Obiajunwa
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Abstract

Copper-doped hematite thin films were prepared by spray pyrolysis technique using a mixture of ethanol and distilled water precursors. Visual observations showed that aqua precursor produced films of less integrity compared with ethanol that produced thin, uniform and transparent yellowish-brown films that adhered well to the substrate. Composition and thickness measurements determined by RBS revealed that ethanol precursor produced thinner films of 94.45 and 51.77 nm while aqua precursor produced films of 1,370 and 1,120 nm for undoped and Cu-doped Fe2O3 respectively. This is an indication that ethanol solutions produced nano-thick films of high integrity. The composition revealed that only the Cu-doped Fe2O3 deposited by ethanol solution gave composition close to stoichiometric Fe2O3 while the others gave non-stoichiometric Fe(OH)3 . Optical characterization carried out using UV-visible spectrophotometer in transmittance mode indicated that the film thickness was directly proportional to the number of passes which is inversely proportional to the transmittance. Three bandgap determination methods namely; Tauc, Absorption Fitting Spectrum (AFS) and Davis-Mott were employed with the result that Tauc and AFS gave close direct and indirect bandgap energies (Eg) of 3.44 and 1.98 for AFS and 3.43 and 2.32 eV for Tauc respectively. The Urbach tail energy determined was 1,100 meV which is an indication of a broad onset of absorption. The steepness parameter (?) was found to be 7.83 while the electron-phonon (Eph ) coupling energy was found to be 0.85 eV. It was also observed that the refractive index (n) was about 15 times greater than the extinction coefficient (k). In the study of the dispersion parameters using single oscillator and Sellmier models, the values of the single oscillator energy (Eosc ), dispersion energy (Ed), zero frequency dielectric constant, zero frequency refractive index, the average oscillator strength (So), the average oscillator parameter and the dispersion parameters were determined. All the values of the parameters estimated are of the same order of magnitude with other semiconducting materials. The study showed that Cu-doped Fe2O3 could be employed as dielectric material as well as in optoelectronic devices.
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喷镀cu掺杂Fe2O3薄膜的光学、介电和光电子性能
以乙醇和蒸馏水为前驱体,采用喷雾热解法制备了掺杂铜的赤铁矿薄膜。目视观察表明,与乙醇相比,水前驱体产生的薄膜完整性较差,乙醇产生的薄膜薄、均匀、透明,黄褐色,与底物粘附良好。用RBS测定了Fe2O3的组成和厚度,结果表明乙醇前驱体制备的Fe2O3薄膜厚度为94.45 nm和51.77 nm,而水前驱体制备的Fe2O3薄膜厚度分别为1370 nm和1120 nm。这表明乙醇溶液产生了高完整性的纳米厚膜。结果表明,乙醇溶液沉积的Fe2O3中,只有掺cu的Fe2O3具有接近化学计量的Fe2O3成分,其余的Fe2O3具有非化学计量的Fe(OH)3。通过紫外可见分光光度计在透射模式下进行的光学表征表明,薄膜厚度与通过次数成正比,而通过次数与透射率成反比。三种带隙确定方法分别为;采用Tauc、吸收拟合光谱(AFS)和Davis-Mott分析,结果表明taauc和AFS给出的直接能带能和间接能带能(Eg)相近,分别为3.44 eV和1.98 eV, 3.43 eV和2.32 eV。测定的乌尔巴赫尾能量是1100兆电子伏特这是广泛吸收的迹象。陡度参数为7.83,电子-声子(Eph)耦合能为0.85 eV。折射率(n)约为消光系数(k)的15倍。在单振和selmier模型的色散参数研究中,确定了单振能量(Eosc)、色散能量(Ed)、零频介电常数、零频折射率、平均振子强度(So)、平均振子参数和色散参数。所估计的所有参数值与其他半导体材料在同一数量级上。研究表明,掺cu的Fe2O3不仅可以用作介电材料,还可以用作光电器件。
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