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Synthesis of Coral-Like Tantalum Oxide Films via Anodization in Mixed Organic-Inorganic Electrolytes

机译:混合有机-无机电解质中阳极氧化合成类似珊瑚的氧化钽薄膜

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摘要

We report a simple method to fabricate nano-porous tantalum oxide films via anodization with Ta foils as the anode at room temperature. A mixture of ethylene glycol, phosphoric acid, NH4F and H2O was used as the electrolyte where the nano-porous tantalum oxide could be synthesized by anodizing a tantalum foil for 1 h at 20 V in a two–electrode configuration. The as-prepared porous film exhibited a continuous, uniform and coral-like morphology. The diameters of pores ranged from 30 nm to 50 nm. The pores interlaced each other and the depth was about 150 nm. After calcination, the as-synthesized amorphous tantalum oxide could be crystallized to the orthorhombic crystal system. As observed in photocatalytic experiments, the coral-like tantalum oxide exhibited a higher photocatalytic activity for the degradation of phenol than that with a compact surface morphology, and the elimination rate of phenol increased by 66.7%.
机译:我们报告了一种简单的方法,通过在室温下以Ta箔为阳极进行阳极氧化来制造纳米多孔钽氧化物薄膜。使用乙二醇,磷酸,NH4F和H2O的混合物作为电解质,可以通过将钽箔在20 V下以两电极配置阳极氧化1 h来合成纳米多孔钽氧化物。所制备的多孔膜表现出连续,均匀和类似珊瑚的形态。孔的直径为30nm至50nm。孔彼此交织,深度为约150nm。煅烧后,合成后的非晶态氧化钽可以结晶为正交晶系。如在光催化实验中所观察到的,珊瑚状氧化钽对苯酚的降解具有比具有紧凑表面形态的氧化钽更高的光催化活性,并且苯酚的去除率提高了66.7%。

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