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Fabrication of Direct Z-scheme a-Fe2O3/FeVO4 Nanobelts with Enhanced Photoelectrochemical Performance

机译:直接Z-SCHEME A-FE2O3/FEVO4纳米纳米物的制造具有增强的光电化学性能

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摘要

A direct Z-scheme type a-Fe2O3/FeVO4 heterostructured photocatalyst with novel nanobelt structure just like the leaves of bryophyllum pinnatum has been successfully synthesized for the first time via integrating a facile electrospinning with annealing procedure. The as-prepared products are characterized by XRD, FT-IR, XPS, SEM, TEM, HRTEM, BET, PL, TOC, HPLC, EIS, Micro-Raman and UV-vis absorbance spectroscopy.The photocatalytic activity of α-Fe2O3/FeVO4 nanobelts evaluated by themethylene blue (MB) degradation under visible light irradiation could be ascribed to the extended light absorption and improved charge separation efficiency. A reasonable Zscheme photocatalytic mechanism is proposed on the basis of structural and electrochemical characterization, which could well explain the enhanced migration rate of photogenerated carriers in α-Fe2O3/FeVO4 heterojunctions.
机译:直接的Z-Scheme型A-FE2O3/FEVO4异质结构的光催化剂具有新型纳米结构,就像Bryophyllum Pinnatum的叶子一样,已通过将宽敞的静电纺丝与退火过程进行了整合。 所制备的产品的特征是XRD,FT-IR,XPS,SEM,TEM,HRTEM,BET,PL,TOC,TOC,HPLC,EIS,EIS,Micro-Raman和UV-VIS吸光度光谱。 在可见光照射下通过甲基蓝色(MB)降解评估的FEVO4纳米BELTS可以归因于扩展的光吸收和提高的电荷分离效率。 基于结构和电化学表征提出了合理的Zscheme光催化机制,这可以很好地解释α-FE2O3/FEVOV4杂点中光生载体的迁移速率的增强。

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