Microcontact Printed BaTiO3 and LaNiO3 Thin Films for Capacitors

There is an ongoing need to develop new technologies to enable further down‐scaling of layer thicknesses in multilayer ceramic devices, for example, in multilayer capacitors (MLC). Microcontact printing of chemical solutions of both the dielectric and electrode layers was explored as an economical m...

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Veröffentlicht in:Journal of the American Ceramic Society 2006-09, Vol.89 (9), p.2816-2821
Hauptverfasser: Nagata, Hajime, Ko, Song Won, Hong, Eunki, Randall, Clive A., Trolier-McKinstry, Susan, Pinceloup, Pascal, Skamser, Daniel, Randall, Michael, Tajuddin, Azizuddin
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Sprache:eng
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Zusammenfassung:There is an ongoing need to develop new technologies to enable further down‐scaling of layer thicknesses in multilayer ceramic devices, for example, in multilayer capacitors (MLC). Microcontact printing of chemical solutions of both the dielectric and electrode layers was explored as an economical means of preparing patterned thin films for MLC without requiring photolithography. For this purpose, methanol/acetic acid‐based BaTiO3 solutions were spun onto polydimethylsiloxane stamps, printed onto substrates, pyrolyzed, and crystallized. LaNiO3 was used as a prototype electrode that could also be microcontact printed. The line edge roughness produced this way was on the order of a tenth of a micrometer, which should enable very small margins. The printed layer thickness was also very uniform. Microcontact printed capacitors with a single dielectric layer were fabricated and found to have dielectric constants >800 with loss tangents
ISSN:0002-7820
1551-2916
DOI:10.1111/j.1551-2916.2006.01137.x