Detail publikace

STRUCTURAL AND MAGNETIC PROPERTIES OF FE-OXIDE LAYERS PREPARED BY INKJET PRINTING ON SI-SUBSTRATE

ZAŽÍMAL, F. SVOBODA, T. DZIK, P. HOMOLA, T. JIRÁSKOVÁ, Y.

Originální název

STRUCTURAL AND MAGNETIC PROPERTIES OF FE-OXIDE LAYERS PREPARED BY INKJET PRINTING ON SI-SUBSTRATE

Typ

článek ve sborníku ve WoS nebo Scopus

Jazyk

angličtina

Originální abstrakt

Magnetic films with two, four, six, and eight layers were prepared using 2D inkjet printing on the 333 K heated Si-substrates at ambient conditions. The microstructure, phase composition of layers, and magnetic studies were investigated using wide spectrum of experimental methods with the aim to find the optimal conditions for producing magnetic sensors by digital printing technology in the near future. As the magnetic compound, the hematite powder was chosen and its milling with Si-binder dissolved in dowanol using glass balls and vial to prevent contamination was done to prepared suspension appropriate for printing. It is shown that hematite transformed markedly into maghemite, thus the layers consisted of small amount hematite and dominant maghemite phases determining the magnetic properties. From the viewpoint of magnetic behavior, the highest saturation magnetization and the lowest coercivity was obtained at the sample with 8 layers.

Klíčová slova

Inkjet printing; hematite; physical properties; testing methods

Autoři

ZAŽÍMAL, F.; SVOBODA, T.; DZIK, P.; HOMOLA, T.; JIRÁSKOVÁ, Y.

Vydáno

21. 10. 2020

Nakladatel

TANGER LTD

Místo

SLEZSKA

ISBN

978-80-87294-98-7

Kniha

Nanocon 2020

Strany od

24

Strany do

29

Strany počet

6

BibTex

@inproceedings{BUT173060,
  author="František {Zažímal} and Tomáš {Svoboda} and Petr {Dzik} and Tomáš {Homola} and Yvonna {Jirásková}",
  title="STRUCTURAL AND MAGNETIC PROPERTIES OF FE-OXIDE LAYERS PREPARED BY INKJET PRINTING ON SI-SUBSTRATE",
  booktitle="Nanocon 2020",
  year="2020",
  pages="24--29",
  publisher="TANGER LTD",
  address="SLEZSKA",
  doi="10.37904/nanocon.2020.3682",
  isbn="978-80-87294-98-7"
}