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Influences of Oxygen Pressure on Optical Properties and Interband Electronic Transitions in Multiferroic Bismuth Ferrite Nanocrystalline Films Grown by Pulsed Laser Deposition

机译:氧气压力对脉冲激光沉积多铁性铋铁氧体纳米晶薄膜光学性能和带间电子跃迁的影响

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Bismuth ferrite (BiFeO3) nanocrystalline films with the crystalline size of 27-40 nm have been grown on c-sapphire substrates under various oxygen pressures of 1 X 10~(-4) to 1 Pa by pulsed laser deposition. The X-ray diffraction spectra show that the films are polycrystalline and present the pure rhombohedral phase. It was found that the Raman-active phonon mode E(TO1) shifts towards a higher energy side from 74 to 76 cm~(-1) with increasing oxygen pressure, indicating a larger tensile stress in the films deposited at higher oxygen pressure. The X-ray photoelectron spectroscopy analysis suggests that the concentrations of both Fe~(2+) ions and oxygen vacancies in the BiFeO3 films increase with decreasing oxygen pressure. Moreover, the dielectric functions in the photon energy range of 0,47-6.5 eV have been extracted by fitting the transmittance spectra with the Tauc-Lorentz dispersion model. From the transmittance spectra, the fundamental absorption edge is observed to present a redshift trend with increasing the temperature from 8 to 300 K. Note that the optical band gap (E_g) decreases with increasing the temperature due to the electron-phonon interactions associated with the interatomic distance in the BiFeO3 films. However, the E_g decreases from 2.88 to 2.78 eV with decreasing oxygen pressure at 8 K, which can be attributed to the increment of oxygen vacancies leading to the formation of some impurity states between the valence and conduction band. It can be concluded that the oxygen pressure during the film fabrication has the significant effects on microstructure, optical properties, and electronic band structure modification of the BiFeO3 films.
机译:通过脉冲激光沉积在1 X 10〜(-4)到1 Pa的各种氧气压力下,在c蓝宝石衬底上生长了晶体尺寸为27-40 nm的铁酸铋(BiFeO3)纳米晶体薄膜。 X射线衍射光谱表明该膜是多晶的并且呈现纯的菱形面相。研究发现,随着氧气压力的增加,拉曼活性声子模E(TO1)从74 cm〜(-1)向更高的能量一侧移动,表明在较高氧气压力下沉积的薄膜具有较大的拉伸应力。 X射线光电子能谱分析表明,BiFeO3薄膜中Fe〜(2+)离子浓度和氧空位都随着氧压的降低而增加。此外,通过将透射光谱与Tauc-Lorentz色散模型拟合,可以提取光子能量在0.47-6.5 eV范围内的介电函数。从透射光谱中,观察到基本吸收边缘随温度从8 K升高到300 K而呈现红移趋势。请注意,由于与电子相关的电子-声子相互作用,光学带隙(E_g)随着温度升高而减小。 BiFeO3薄膜中的原子间距离。然而,随着8 K处氧气压力的降低,E_g从2.88 eV降至2.78 eV,这可以归因于氧空位的增加,导致价和导带之间形成一些杂质态。可以得出结论,薄膜制造过程中的氧气压力对BiFeO3薄膜的微观结构,光学性能和电子能带结构的改性具有重要影响。

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