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Influence of Anodic Conditions on Self-ordered Growth of Highly Aligned Titanium Oxide Nanopores

机译:阳极条件对高度排列的二氧化钛纳米孔自序生长的影响

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摘要

Self-aligned nanoporous TiO2templates synthesized via dc current electrochemical anodization have been carefully analyzed. The influence of environmental temperature during the anodization, ranging from 2 °C to ambient, on the structure and morphology of the nanoporous oxide formation has been investigated, as well as that of the HF electrolyte chemical composition, its concentration and their mixtures with other acids employed for the anodization. Arrays of self-assembled titania nanopores with inner pores diameter ranging between 50 and 100 nm, wall thickness around 20–60 nm and 300 nm in length, are grown in amorphous phase, vertical to the Ti substrate, parallel aligned to each other and uniformly disordering distributed over all the sample surface. Additional remarks about the photoluminiscence properties of the titania nanoporous templates and the magnetic behavior of the Ni filled nanoporous semiconductor Ti oxide template are also included.
机译:仔细分析了通过直流电电化学阳极氧化合成的自对准纳米多孔TiO2模板。研究了阳极氧化过程中环境温度(从2°C到环境温度)对纳米多孔氧化物形成的结构和形态以及HF电解质化学组成,其浓度以及它们与其他酸的混合物的影响。用于阳极氧化。自组装的二氧化钛纳米孔阵列的内孔直径在50至100 nm之间,壁厚在20至60 nm至300 nm之间,生长在非晶态下,垂直于Ti衬底,彼此平行排列且均匀无序分布在整个样品表面。还包括有关二氧化钛纳米多孔模板的光致发光特性以及Ni填充的纳米多孔半导体Ti氧化物模板的磁性的其他说明。

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