4.6 Article

Polarization-enhanced cell walls etching of anodic titanium oxide

Journal

NANOTECHNOLOGY
Volume 33, Issue 6, Pages -

Publisher

IOP Publishing Ltd
DOI: 10.1088/1361-6528/ac345c

Keywords

photonic crystal; anodic titania; etching; cell wall; porosity

Funding

  1. Russian Foundation for Basic Research [20-03-00946]

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This study found that the etching of ATO cell walls during anodic oxidation is significantly enhanced under anodic polarization, resulting in a blue shift of the photonic band gap position in the photonic crystal. This is crucial for the synthesis of ATO photonic crystals with precise photonic band gap positions.
Anodic titanium oxide (ATO) photonic crystals (PhCs) are promising for photonics, photocatalysis, and solar cells. A refractive index modulation in ATO PhCs is caused by the modulation of porosity and, thus, the pore diameter should be controlled precisely. The ATO cell walls etching in electrolyte solution during anodizing increases the porosity of the PhC structure and shifts the photonic band gap (PBG) position to shorter wavelengths. Until now, the ATO cell walls etching in organic based electrolytes has been associated solely with the chemical dissolution of ATO in fluoride-containing solutions. Here, a significant enhancement of cell walls etching is observed when electric current flows under anodic polarization. This effect leads to the blue shift of the PBG position with the number of periods of ATO PhC structure. Therefore, it is essential for the synthesis of ATO PhCs with a precise PBG position.

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