


Methods:
- Mass-sensitive detection of chemical and biological analytes.
- Capacitive and optical sensing.
- Sensor measurements in real-life matrices.
- Self-organized, artificial sensor layers based on molecularly imprinted polymers, self-assembled monolayers and affinity nanoparticles.
Equipment:
- Sensor electronics: network analyzer, LCR-bridges, freuqency counters
- Molecular spectrometry: FT-IR, UV-Vis, Fluorescence
- GC-MS
- Fluidics for gas and liquid phase
- SPR
- AFM/STM Veeco Nanoscope 8 for surface characterization
- Deposition techniques: spin coater, sputter machine
Institut für Analytische Chemie
University of Vienna
Währinger Straße 38
1010 Vienna
T: +43-1-4277-52301
F: +43-1-4277-9523
University of Vienna
Währinger Straße 38
1010 Vienna
T: +43-1-4277-52301
F: +43-1-4277-9523