Detail publikačního výsledku

Improved Anodization Technique of Nanostructure Fabrication

VOJKŮVKA, L., HUBÁLEK, J.

Originální název

Improved Anodization Technique of Nanostructure Fabrication

Anglický název

Improved Anodization Technique of Nanostructure Fabrication

Druh

Stať ve sborníku v databázi WoS či Scopus

Originální abstrakt

Several experimental trials of aluminum anodization under specific conditions were carried out in this work. Samples were anodized at different voltages varying from 18 – 25 V. The high initial current during the anodization with voltages over 22 V was determined as main problem. Therefore the examinations in order to discover the reason and the principle of this negative phenomenon have been proposed and tested. The electropolishing pre-step was carried out in order to obtain a smooth mirror-finish surface of aluminum foils.

Anglický abstrakt

Several experimental trials of aluminum anodization under specific conditions were carried out in this work. Samples were anodized at different voltages varying from 18 – 25 V. The high initial current during the anodization with voltages over 22 V was determined as main problem. Therefore the examinations in order to discover the reason and the principle of this negative phenomenon have been proposed and tested. The electropolishing pre-step was carried out in order to obtain a smooth mirror-finish surface of aluminum foils.

Klíčová slova

electropolishing, anodization, alumina

Klíčová slova v angličtině

electropolishing, anodization, alumina

Autoři

VOJKŮVKA, L., HUBÁLEK, J.

Vydáno

14.09.2004

ISBN

80-214-2819-8

Kniha

Socrates Workshop 2004. Intensive Training Programme in Electronic System Design

Strany od

93

Strany počet

5

BibTex

@inproceedings{BUT11874,
  author="Lukáš {Vojkůvka} and Jaromír {Hubálek}",
  title="Improved Anodization Technique of Nanostructure Fabrication",
  booktitle="Socrates Workshop 2004. Intensive Training Programme in Electronic System Design",
  year="2004",
  pages="5",
  isbn="80-214-2819-8"
}