Title :
Non-faraday capacitance sensors based on nanoporous anodic aluminium oxide passivating films
Author :
Drapeza, A.V. ; Loban, V.A. ; Sudnik, Y.M. ; Labunov, V.A. ; Orekhovskaya, T.I. ; Parkun, M.V.
Author_Institution :
Belarusian State Univ., Minsk, Belarus
Abstract :
It is shown that the silanization of the surface assists enhancement of homogeneous polarization properties of the passivating cover on base of the nanoporous aluminum oxide in non-faraday capacitance sensors, usable for studying of the microorganisms´ growth. A new immunochemical method of differentiated diagnostics of the A(H1N1) B influenza viruses is proposed.
Keywords :
aluminium compounds; capacitive sensors; microorganisms; nanoporous materials; passivation; patient diagnosis; A(H1N1) B influenza virus; AlO; differentiated diagnostics; homogeneous polarization properties; immunochemical method; microorganisms growth; nanoporous anodic aluminium oxide passivating films; nonfaraday capacitance sensor; Aluminum oxide; Capacitance; Capacitive sensors; Films; Immune system; Nanobioscience;
Conference_Titel :
Microwave and Telecommunication Technology (CriMiCo), 2010 20th International Crimean Conference
Conference_Location :
Sevastopol
Print_ISBN :
978-1-4244-7184-3
DOI :
10.1109/CRMICO.2010.5632925