Events8th International Symposium on Sensor Science
Published
with-doi10.3390/I3S2021Dresden-10108 (registering DOI)
This submission belongs to the session S2. Chemical Sensors of the event 8th International Symposium on Sensor Science
Published date
17 May, 2021
Citation
Laura Kasper, Abbas Zein Al-Din, Jürgen Bruns, Rudolf Volkmer, Klaus Petermann, Fix-Wavelength Multi-Analyte Detection with serial SOI Ring Resonators, in Proceedings of 8th International Symposium on Sensor Science, 17 May–28 May 2021, MDPI: Basel, Switzerland, doi: 10.3390/I3S2021Dresden-10108
Share
Email
Facebook
Twitter
LinkedIn

Fix-Wavelength Multi-Analyte Detection with serial SOI Ring Resonators

image
Abbas Zein Al-Din 2
Rudolf Volkmer 3
Klaus Petermann 2
1. Department of High Frequency Technology/Photonics, Technische Universität Berlin, Einsteinufer 25, 10587 Berlin, Germany, Germany
2. Department of High Frequency Technology/Photonics, Technische Universität Berlin, Einsteinufer 25, 10587 Berlin, Germany
3. Institute of Medical Immunology, Charité—Universitätsmedizin Berlin, Lindenberger Weg 80, 13125 Berlin, Germany
Abstract

We present a method for the read-out of five serially arranged SOI ring resonator-based biosensors at a speed of 3 Hz/sensor and at a fixed wavelength of 1550 nm. The system uses the high thermo-optical coefficient of silicon by applying AC voltages to periodically heat up electrodes adjacent to each sensor. A time-division multiplex scheme allows the allocation of the measured optical output from the mutual spectrum to each specific resonator. We demonstrate our system by immobilizing two different antibodies (biotin and a hexa-His-peptide) at the surface of selected resonators and successfully showing the selective binding characteristics of analyte-probing in a microfluidics supported experiments.

Keywords
biosensors
ring resonators
silicon-on-insulator
thermo-optical tuning
sensor multiplexing
microfluidics
Manuscript
Oral Presentation
Optoelectronic sensory system for Raman spectromicroscopes
Highly sensitive silicon nanowire biosensor devices for the investigation of UniCAR platform in immunotherapy