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Anodic luminescence, structural, photoluminescent, and photocatalytic properties of anodic oxide films grown on niobium in phosphoric acid

机译:铌在磷酸中生长的阳极氧化膜的阳极发光,结构,光致发光和光催化性能

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This article reports on properties of oxide films obtained by anodization of niobium in phosphoric acid before and after the dielectric breakdown. Weak anodic luminescence of barrier oxide films formed during the anodization of niobium is correlated to the existence of morphological defects in the oxide layer. Small sized sparks generated by dielectric breakdown of formed oxide film cause rapid increase of luminescence intensity. The luminescence spectrum of obtained films on niobium under spark discharging is composed of continuum radiation and spectral lines caused by electronic spark discharging transitions in oxygen and hydrogen atoms. Oxide films formed before the breakdown are amorphous, while after the breakdown oxide films are partly crystalline and mainly composed of Nb2O5 hexagonal phase. The photocatalytic activity of obtained oxide films after the breakdown was investigated by monitoring the degradation of methyl orange. Increase of the photocatalytic activity with time is related to an increase of oxygen vacancy defects in oxide films formed during the process. Also, higher concentration of oxygen vacancy defects in oxide films results in higher photoluminescence intensity. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文报道了介电击穿之前和之后,通过铌在磷酸中阳极氧化获得的氧化膜的性能。铌阳极氧化过程中形成的势垒氧化膜的弱阳极发光与氧化层中形态缺陷的存在有关。由形成的氧化膜的介电击穿产生的小尺寸火花会导致发光强度快速增加。火花放电下获得的铌膜上的发光光谱由连续辐射和氧和氢原子中电子火花放电跃迁引起的光谱线组成。击穿之前形成的氧化膜是非晶态的,而击穿之后形成的氧化膜是部分结晶的,并且主要由Nb2O5六方相组成。通过监测甲基橙的降解来研究击穿后获得的氧化膜的光催化活性。光催化活性随时间的增加与该过程中形成的氧化膜中氧空位缺陷的增加有关。而且,氧化物膜中较高的氧空位缺陷浓度导致较高的光致发光强度。 (C)2015 Elsevier B.V.保留所有权利。

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