Nanostructured indium phosphide used in electrowetting system for biosensor applications
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SIRBU, Lilian, VODĂ, Irina, ESINENCO, Dorin, MULLER, Raluca, VOICU, Rodica Cristina, DǍNILǍ, Mihai, GHIMPU, Lidia, TIGINYANU, Ion, URSACHI, Veaceslav. Nanostructured indium phosphide used in electrowetting system for biosensor applications. In: Proceedings of the International Semiconductor Conference: CAS, Ed. 34, 17-19 octombrie 2011, Sinaia. New Jersey: Institute of Electrical and Electronics Engineers Inc., 2011, Vol. 2, pp. 237-240. ISBN 978-161284171-7. DOI: https://doi.org/10.1109/SMICND.2011.6095780
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Proceedings of the International Semiconductor Conference
Vol. 2, 2011
Conferința " International Semiconductor Conference"
34, Sinaia, Romania, 17-19 octombrie 2011

Nanostructured indium phosphide used in electrowetting system for biosensor applications

DOI:https://doi.org/10.1109/SMICND.2011.6095780

Pag. 237-240

Sirbu Lilian1, Vodă Irina2, Esinenco Dorin3, Muller Raluca4, Voicu Rodica Cristina4, Dǎnilǎ Mihai4, Ghimpu Lidia1, Tiginyanu Ion13, Ursachi Veaceslav35
 
1 Institute of the Electronic Engineering and Nanotechnologies "D. Ghitu" of the Academy of Sciences of Moldova,
2 Institute of Chemistry of the Academy of Sciences of Moldova,
3 Technical University of Moldova,
4 National Institute for Research and Development in Microtechnologies ,
5 Academy of Sciences of Moldova
 
Proiecte:
 
Disponibil în IBN: 12 decembrie 2023


Rezumat

We demonstrated the fabrication of complex nanostructured InP membranes with porous compact packed structure that have been cut during electrochemical etching in the same anodic process. The membranes were filled with optically transparent compounds. We considered the covering of the nanoporous film and filling the pores with polymers imprinted with nano metallic particles in order to stabilize and adjust the sensor characteristics for specific biological samples. Also we designed and fabricated lab-on-a-chip devices based on Si which can be used for transporting bio-samples to the detector by means of electrowetting method. The experimental study and emulations based on Finite Element Model (FEM) show also that the obtained materials are promising for nonlinear optical applications, in particular for the development of electrowetting systems for MEMS, MOEMS, etc.

Cuvinte-cheie
Biological samples, Biosensor applications, Lab-on-a-chip devices, Metallic particles, Nano-porous films, Nonlinear optical applications, Porous compacts, Sensor characteristics