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March 3, 2026Dian hua xue/Dian huaxue0 citationsOpen Access

Control of Pore Nucleation and Rearrangement Kinetics During Aluminium Anodizing in Phosphoric Acid Electrolyte

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IRIlya V. RoslyakovNSNikita A. ShirinDTDmitry Tsymbarenko

Key Points

  • This research aims to improve the kinetics of pore formation in anodic aluminium oxide films during anodizing in phosphoric acid.
  • Utilized aluminium foils pre-patterned by first anodizing and selective dissolution of AAO layer.
  • Investigated effects of surface morphology, including roughness and pyramidal spikes, on pore nucleation.
  • Conducted anodizing in both weak and strong acid electrolytes, comparing outcomes.
  • Doubling of the rate of pore nucleation during anodizing in phosphoric acid was achieved.
  • Two-hour time saving in the anodizing process was observed when strong acid was used for pre-patterning.
  • Improved surface roughness was linked to increased pore rearrangement efficiency.

Abstract

Anodic aluminium oxide (AAO) porous films with an interpore distance of several hundred nanometers are of great interest due to their unique interaction with visible and near-infrared light, and high thermal stability up to 1500 °C. These porous films are prepared by aluminium anodizing at high voltages in weak acids, leading to a slow kinetics of initial stages of porous structure formation. Here, we propose an approach to accelerate AAO formation in electrolytes based on weak acids such as phosphoric acid. Aluminium foils, pre-patterned using first anodizing under different conditions and subsequent selective dissolution of a sacrificial AAO layer, were utilized as substrates. The morphology of the aluminium surface, including surface roughness and height of pyramidal spikes, plays a crucial role in the pore nucleation and rearrangement process during the second anodizing. In particular, by first anodizing in strong acid electrolytes at low voltages (such as 0.3 M sulfuric acid at 25 V), it is possible to double the rate of pore nucleation and subsequent reach of the steady-state regime during second anodizing in phosphoric acid. As a result, about 2 hours can be saved during the two-step anodizing process in phosphoric acid if a strong acid electrolyte is used for the first anodizing to pre-pattern aluminium surface.

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Cite This Study

Roslyakov et al. (2026) studied this question.

synapsesocial.com/papers/69a67eebf353c071a6f0a935https://doi.org/10.61558/2993-074x.3600
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