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Self-organized formation of hexagonal pore arrays in anodic alumina

Applied Physics Letters · 1998 · Vol. 72(10) · pp. 1173–1175
O. JessenskyFrank MüllerU. Gösele

Abstract

The conditions for the self-organized formation of ordered hexagonal structures in anodic alumina were investigated for both oxalic and sulfuric acid as an electrolyte. Highly ordered pore arrays were obtained for oxidation in both acids. The size of the ordered domains depends strongly on the anodizing voltage. This effect is correlated with a voltage dependence of the volume expansion of the aluminum during oxidation and the current efficiency for oxide formation. The resulting mechanical stress at the metal/oxide interface is proposed to cause repulsive forces between the neighboring pores which promote the formation of ordered hexagonal pore arrays.

Anodic Oxide Films and NanostructuresSmart Materials for ConstructionConcrete Corrosion and DurabilityAnodizingMaterials scienceElectrolyteOxideAluminiumHexagonal crystal systemChemical engineeringMetalAnodeOxalic acid
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Journal of The Electrochemical Society · 1953 · 1,354 citations
Fabrication of Gold Nanodot Array Using Anodic Porous Alumina as an Evaporation Mask
Japanese Journal of Applied Physics · 1996 · 1,009 citations
Membrane-Based Synthesis of Nanomaterials
Chemistry of Materials · 1996 · 1,454 citations
The morphology and mechanism of formation of porous anodic films on aluminium
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1970 · 1,187 citations
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