Publication | Closed Access
Ultrafast Growth of Highly Ordered Anodic TiO<sub>2</sub> Nanotubes in Lactic Acid Electrolytes
139
Citations
44
References
2012
Year
Materials ScienceFunctional Self-organized TioLactic Acid ElectrolytesEngineeringElectrode-electrolyte InterfaceNanomaterialsEnergy ConversionNanotube LayersPhoto-electrochemical CellUltrafast GrowthChemistryLactic AcidElectrochemical ProcessEnergy MaterialElectrochemistry
In the present work, we show that fully functional self-organized TiO(2) nanotube layers can be electrochemically grown with an unprecedented growth rate if lactic acid (LA) is used as an additive during anodization. The main effect of LA addition is that it allows performing nanotube growth at significantly higher anodization voltage than in the LA free case, and this without dielectric oxide breakdown ("burning"). As a result, for example, 15 μm tube thick nanotube layers, suitable for a use in dye-sensitized solar cells (DSSCs) can be grown in 45 s and 7 μm tubes suitable for water splitting can be grown in 25 s.
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