首页> 外文期刊>CERAMICS INTERNATIONAL >Comparative study on multiferroic (Bi_(0.9)RE_(0.1))(Fe_(0.97)Co_(0.03))O_(3-δ) (RE=Ce and Ho) thin films: Structural, electrical and optical properties
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Comparative study on multiferroic (Bi_(0.9)RE_(0.1))(Fe_(0.97)Co_(0.03))O_(3-δ) (RE=Ce and Ho) thin films: Structural, electrical and optical properties

机译:多铁(Bi_(0.9)RE_(0.1))(Fe_(0.97)Co_(0.03))O_(3-δ)(RE = Ce和Ho)薄膜的比较研究:结构,电学和光学性质

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摘要

Polycrystallinc Bi_(0.9)Ce_(0.1)Fe_(0.97)Co_(0.03)O_(3-δ) and Bi_(0.9)Ho_(0.1)Fe_(0.97)Co_(0.03)O_(3-δ) (BCFC and BHFC) thin films have been deposited on FTO/glass substrates by using a sol-gel method. The influence of Ce, Co and Ho, Co co-doping on the structural, ferroelectric, magnetic and optical properties of the films has been investigated. X-ray diffraction and Raman spectra analyses reveal a lattice distortion for the BCFC film and a structural transition for the BHFC film. The XPS study demonstrates a mixed valence states of the component elements for the BCFC and BHFC films. The Bi-site deficiencies in the BCFC and BHFC films are decreased in comparison to pure BFO film, while the concentrations of Fe~(2+) ions and oxygen vacancies arc increased. The interface-limited Fowler-Nordheim tunneling dominates the leakage currents of the BCFC and BHFC films at the higher applied electric field. The hysteresis loops suggest that the aging effect or domain pinning in the BCFC film is more severe than that in the BHFC film. Highly enhanced magnetization is observed in the BCFC film due to the small grain size effect. The band gap values of the BFO, BCFC and BHFC films estimated from the UV-visible studies are 2.27, 2.57 and 2.59 eV, respectively.
机译:多晶Bi_(0.9)Ce_(0.1)Fe_(0.97)Co_(0.03)O_(3-δ)和Bi_(0.9)Ho_(0.1)Fe_(0.97)Co_(0.03)O_(3-δ)(BCFC和BHFC) )薄膜已通过溶胶-凝胶法沉积在FTO /玻璃基板上。研究了Ce,Co和Ho,Co共掺杂对薄膜结构,铁电,磁性和光学性质的影响。 X射线衍射和拉曼光谱分析揭示了BCFC膜的晶格畸变和BHFC膜的结构转变。 XPS研究证明了BCFC和BHFC膜的组成元素的混合价态。与纯BFO薄膜相比,BCFC和BHFC薄膜的双位缺陷减少,而Fe〜(2+)离子和氧空位的浓度增加。受界面限制的Fowler-Nordheim隧穿在较高的施加电场下支配BCFC和BHFC膜的泄漏电流。磁滞回线表明,BCFC薄膜的老化效应或畴钉扎比BHFC薄膜的老化效应或畴钉扎更为严重。由于小的晶粒尺寸效应,在BCFC膜中观察到高度增强的磁化。根据紫外线可见性研究估算的BFO,BCFC和BHFC薄膜的带隙值分别为2.27、2.57和2.59 eV。

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