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电解液组成对纯钛微弧氧化膜结构及光催化活性的影响
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Effect of Electrolyte Composition on Structure and Photocatalytic Activity of Micro-Arc Oxidation Coating on Pure Titanium
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    摘要:

    分别在钨酸钠和磷酸二氢钾电解液中制备了纯钛的微弧氧化(MAO)膜,利用SEM、EDX、XRD分析了膜层的形貌、元素分布及相组成,并测试了2种膜层的光催化活性。结果表明,纯钛在2种电解液中均形成粗糙多孔的微弧氧化膜层,但钨酸钠溶液中形成的膜层表面的孔洞尺寸较小、分布较均匀。膜层的元素组成和相组成与电解液成分有关,钨酸钠溶液中的膜层由W、Ti、O元素组成,W在膜层中近似均匀分布,锐钛矿与金红石的含量比(质量比)为27:73,而磷酸二氢钾电解液中的膜层由P、Ti、O元素组成,P从表面向内层逐渐增加,锐钛矿与金红

    Abstract:

    Micro-arc oxidation (MAO) films on pure titanium were prepared in sodium tungsten electrolyte and in potassium dihydrogen phosphate electrolyte, respectively. The surface and cross-section morphologies, the element distribution and the phase composition of coatings were analyzed by means of SEM, EDX, XRD. The photocatalytic activity of the two coatings was tested by UV-Vis spectra. The results show that MAO coatings prepared in the two electrolytes are rough and micro-porous, but the pores on the surface of the coating prepared in the sodium tungsten electrolyte are smaller and more homogeneous. The composition and the phase constitution of the coatings depent on the electrolyte composition, The coating prepared in the sodium tungstate solution mainly consists of elements W, Ti, O, element W is distributed homogeneously in the coating, and the ratio of anatase to rutile is 27:73, while the elements of the coating prepared in the potassium dihydrogen phosphate electrolyte are P, Ti, O, the content of P gradually increased from the surface to the dense layer, and the ratio of anatase to rutile is 84:16. The result of absorbance test shows that the photocatalytic activity of the coating formed in sodium tungsten electrolyte is higher than that of the coating formed in the potassium dihydrogen phosphate electrolyte, because of its larger specific surface area

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何 剑,蔡启舟,骆海贺,魏伯康,李定骏.电解液组成对纯钛微弧氧化膜结构及光催化活性的影响[J].稀有金属材料与工程,2009,38(5):794~798.[He Jian, Cai Qizhou, Luo Haihe, Wei Bokang, Li Dingjun. Effect of Electrolyte Composition on Structure and Photocatalytic Activity of Micro-Arc Oxidation Coating on Pure Titanium[J]. Rare Metal Materials and Engineering,2009,38(5):794~798.]
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  • 收稿日期:2008-05-19
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