Formation of ultrathin anodised aluminium oxide (AAO) membranes with high aspect ratio by Al anodization in sulphuric and oxalic acids at low potentials was investigated. Low anodization potentials ensure slow electrochemical reaction speeds and formation of AAO membranes with pore diameter and thickness below 20 nm and 70 nm respectively. Minimum time necessary for formation of continuous AAO membranes was determined. AAO membrane pore surface was covered with polymer Paraloid B72 TM to transport it to the selected substrate. The fabricated ultra thin AAO membranes could be used to fabricate nanodot arrays on different surfaces. \ua9 Published under licence by IOP Publishing Ltd
The influence of experimental parameters on the morphology of the porous structure and on the format...
In this study we investigate the electrochemical synthesis and characterisation of a nanometre scale...
The influence of experimental parameters on the morphology of the porous structure and on the format...
We present a systematic study of membrane structure (pore diameter and arrangement) in anodized alum...
We present a systematic study of membrane structure (pore diameter and arrangement) in anodized alum...
Nanoporous anodic aluminum oxide (AAO) tubular membranes were fabricated from aluminum alloy tubes i...
The through-hole porous anodic aluminum oxide (AAO) membranes were fabricated by a simple two-step a...
Anodic alumina membranes with highly ordered cylindrical pores and tuneable geometry have been prepa...
Among the porous membranes, PAOA-based membranes, formed by the method of electrochemical anodizing...
Well-ordered large-pore anodic aluminum oxide membranes were one-step prepared in water-deficient el...
Abstract: Highly ordered nanoporous aluminum oxide (PAAO) is one of the most popular and cost-effec...
In this study we investigate the electrochemical synthesis and characterisation of a nanometre scale...
Nanoporous aluminum oxide membranes with high open porosity are prepared by anodic oxidation. Conven...
The electrochemical fabrication of alumina membranes by anodizing of aluminium in phosphoric acid an...
an electrochemical reactor for the preparation of self-supported comparatively thin (up to 10 μm) an...
The influence of experimental parameters on the morphology of the porous structure and on the format...
In this study we investigate the electrochemical synthesis and characterisation of a nanometre scale...
The influence of experimental parameters on the morphology of the porous structure and on the format...
We present a systematic study of membrane structure (pore diameter and arrangement) in anodized alum...
We present a systematic study of membrane structure (pore diameter and arrangement) in anodized alum...
Nanoporous anodic aluminum oxide (AAO) tubular membranes were fabricated from aluminum alloy tubes i...
The through-hole porous anodic aluminum oxide (AAO) membranes were fabricated by a simple two-step a...
Anodic alumina membranes with highly ordered cylindrical pores and tuneable geometry have been prepa...
Among the porous membranes, PAOA-based membranes, formed by the method of electrochemical anodizing...
Well-ordered large-pore anodic aluminum oxide membranes were one-step prepared in water-deficient el...
Abstract: Highly ordered nanoporous aluminum oxide (PAAO) is one of the most popular and cost-effec...
In this study we investigate the electrochemical synthesis and characterisation of a nanometre scale...
Nanoporous aluminum oxide membranes with high open porosity are prepared by anodic oxidation. Conven...
The electrochemical fabrication of alumina membranes by anodizing of aluminium in phosphoric acid an...
an electrochemical reactor for the preparation of self-supported comparatively thin (up to 10 μm) an...
The influence of experimental parameters on the morphology of the porous structure and on the format...
In this study we investigate the electrochemical synthesis and characterisation of a nanometre scale...
The influence of experimental parameters on the morphology of the porous structure and on the format...