Detailseite
SPP 1157: Integrierte elektrokeramische Funktionsstrukturen
Fachliche Zuordnung
Materialwissenschaft und Werkstofftechnik
Förderung
Förderung von 2003 bis 2010
Projektkennung
Deutsche Forschungsgemeinschaft (DFG) - Projektnummer 5471984
Erstellungsjahr
2010
Zusammenfassung der Projektergebnisse
Keine Zusammenfassung vorhanden
Projektbezogene Publikationen (Auswahl)
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Hybrid organic-inorganic materials for integrated optoelectronic devices. physica status solidi (a),Volume 208, 2011, Issue 2
T. Wehlus et al.
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Integrated impedance based hydrocarbon gas sensors with Nazeolite /Cr2O3 thin-film interfaces: From physical modeling to devices. physica status solidi (a),Volume 208, 2011, Issue 2
A. Fischerauer et al.
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Langasite based miniaturized functional structures - Preparation, high-temperature properties and applications. DOI: 10.1002/pssa.201026639
J. Sauerwald et al.
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Langasite for microelectromechanical systems. physica status solidi (a),Volume 208, 2011, Issue 2
E. Ansorge et al.
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Laser direct writing: enabling monolithic and hybrid integrated solutions on the Lithium Niobate platform. physica status solidi (a),Volume 208, 2011, Issue 2
J. Thomas et al.
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Micro- and nano-electromechanical resonators based on SiC and Group III-nitrides for sensor applications. physica status solidi (a),Volume 208, 2011, Issue 2
K. Brueckner et al.
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Novel Multifunctional Materials Based on Oxide Thin Films and Artificial Heteroepitaxial Multilayers. physica status solidi (a),Volume 208, 2011, Issue 2
M. Opel et al.
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ntegrated impedance based hydrocarbon gas sensors with Na-zeolite / Cr2O3 thin film interfaces: Electrochemical mechanism of the impedance changes.
A. Dubbe
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Pr-O-Al-N dielectrics for metal insulator semiconductor stacks. physica status solidi (a),Volume 208, 2011, Issue 2
K. Henkel et al.
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Spin coated organic ferroelectric films for non-volatile memories. physica status solidi (a),Volume 208, 2011, Issue 2
K. Henkel et al.