奥里维里斯
铋
光催化
罗丹明B
钽酸盐
材料科学
钛酸铋
铋铁氧体
价(化学)
结构精修
晶体结构
分析化学(期刊)
结晶学
催化作用
冶金
化学
多铁性
光电子学
铁电性
有机化学
电介质
生物化学
色谱法
作者
Yanlin Huang,Longqing Mi,Jie Qin,Shala Bi,Hyo Jin Seo
摘要
Abstract This work reports on the preparation, structure, photochemical, and magnetic properties of six‐layered Aurivillius bismuth ferrititanates, that is, Bi 7 Ti 3 Fe 3 O 21 , Bi 7 (Ti 2 Nb)Fe 3 O 21+δ , and Bi 7 (Ti 2 Mg)Fe 3 O 21−δ nanoparticles. The samples were prepared through the modified citrate complexation and precursor film process. The XRD Rietveld refinements were conducted to study the phase formations and crystal structure. The morphological and chemical component characteristics were investigated using SEM , TEM , and EDX analyses. Bi 7 Ti 3 Fe 3 O 21 , Bi 7 (Ti 2 Nb)Fe 3 O 21+δ , and Bi 7 (Ti 2 Mg)Fe 3 O 21−δ nanoparticles present an indirect allowed transitions with band energies of 2.04, 2.03, and 2.02 eV, respectively. The hybridized (O2p+Fe t 2g +Bi6s) formed the valence band ( VB ) and electronic components of (Ti–3d+Fe– e g ) formed the conduction band ( CB ) of this six‐layered Aurivillius bismuth ferrititanate. The three samples showed efficient photocatalytic degradation of Rhodamine B (RhB) dyes with the excitation wavelength λ > 420 nm. The optical absorption, photodegradation, and magnetic abilities were improved through microstructural modification on “B” site via partial substitution of Mg 2+ and Nb 5+ for Ti 4+ . The photocatalytic results were discussed based on the layer structure and multivalent Fe ions. Fe 3+/2+ in the perovskite slabs (Bi 5 Fe 3 Ti 3 O 19 ) 2− could act as the catalytic mediators in the photocatalysis process. As a photocatalyst, Aurivillius Bi 7 (Ti 2 Mg)Fe 3 O 21−δ nanoparticle is advantageous due to its photocatalytic and magnetically recoverable abilities.
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