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Fabrication of Porous Anodic Alumina with Ultrasmall Nanopores

机译:具有超小纳米孔的多孔阳极氧化铝的制备

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摘要

Anodization of Al foil under low voltages of 1–10 V was conducted to obtain porous anodic aluminas (PAAs) with ultrasmall nanopores. Regular nanopore arrays with pore diameter 6–10 nm were realized in four different electrolytes under 0–30°C according to the AFM, FESEM, TEM images and current evolution curves. It is found that the pore diameter and interpore distance, as well as the barrier layer thickness, are not sensitive to the applied potentials and electrolytes, which is totally different from the rules of general PAA fabrication. The brand-new formation mechanism has been revealed by the AFM study on the samples anodized for very short durations of 2–60 s. It is discovered for the first time that the regular nanoparticles come into being under 1–10 V at the beginning of the anodization and then serve as a template layer dominating the formation of ultrasmall nanopores. Under higher potentials from 10 to 40 V, the surface nanoparticles will be less and less and nanopores transform into general PAAs.
机译:在1-10 V的低压下对铝箔进行阳极氧化,以获得具有超小纳米孔的多孔阳极氧化铝(PAA)。根据AFM,FESEM,TEM图像和电流演化曲线,在0–30°C下在四种不同的电解质中可实现孔径为6–10 nm的常规纳米孔阵列。发现孔径和孔间距离以及阻挡层厚度对施加的电势和电解质不敏感,这与常规PAA制造的规则完全不同。 AFM研究揭示了一种全新的形成机理,该过程对2-60 s的极短时间进行阳极氧化。首次发现,规则的纳米粒子在阳极氧化开始时的电压低于1-10 V,然后用作控制超小纳米孔形成的模板层。在10至40 V的较高电势下,表面纳米粒子将越来越少,并且纳米孔会转变为一般的PAA。

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