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Titanium oxide films produced on commercially pure titanium by anodic oxidation with different voltages

机译:通过不同电压的阳极氧化在商业纯钛上生产的氧化钛膜

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Titanium oxide films produced on commercially pure Ti by anodic oxidation with different voltages were analyzed. Anodic oxidation was carried out at room temperature using 1.4 M H_3PO_4 electrolyte and a platinum counter-electrode, in potentiostatic mode under the following conditions: 50 V, 100 V, 150 V, 200 V and 250 V. It was observed that porous titanium layers were formed at all voltage values but morphological differences were observed. Initially, the film was thin but with increasing voltage it broke down locally and porous regions became evident due to the dielectric breakdown. The porosity and the pore size increased with the increasing voltage. The surface morphology in samples formed with 200 V had substantially different porous structures than those formed with other voltage values. The anodic film surface displayed pores and craters formed on the relatively flat ground oxide surface. AFM images showed that higher voltages produced thicker titanium oxide films.
机译:分析了在不同电压下通过阳极氧化在商业纯钛上生产的氧化钛膜。在恒压模式下,在以下条件下使用50 M,100 V,150 V,200 V和250 V在恒电位模式下使用1.4 M H_3PO_4电解质和铂对电极在室温下进行阳极氧化。观察到多孔钛层在所有电压值下都形成了α,但是观察到形态差异。最初,薄膜很薄,但是随着电压的升高,薄膜会局部击穿,由于介电击穿,多孔区域变得明显。孔隙率和孔径随电压的增加而增加。用200 V形成的样品中的表面形态具有与用其他电压值形成的那些基本上不同的多孔结构。阳极膜表面显示出在相对平坦的地面氧化物表面上形成的孔和凹坑。原子力显微镜图像显示,较高的电压产生较厚的氧化钛膜。

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