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Numerical simulation of the position and orientation effects on the impedance response of nanoelectrode array biosensors to DNA and PNA strands
Affiliation:1. DIEGM, Università degli Studi di Udine, via delle Scienze 206, 33100 Udine, Italy;2. NXP Semiconductors, Leuven, Belgium;1. Dipartimento di Fisica, Università degli Studi di Bari, Via Amendola 173, 70126 Bari, Italy;2. INFN, Sezione di Bari, Via Orabona 4, 70126 Bari, Italy;3. CNR - IMIP Bari,Via Orabona 4, 70126 Bari Italy;4. CNR - ICCOM Bari, Via Orabona 4, 70126 Bari Italy;1. CNR-IOM, Area Science Park SS 14 km 163,5, Basovizza, TS, Italy;2. LaNN, Corso Stati Uniti 4, Padova, Italy
Abstract:This paper investigates by simulation the response of a nanoelectrode capacitive biosensor to single and double strands of DNA/PNA and up to frequencies well above the electrolyte dielectric relaxation limit. The expected change in capacitance both for an idealized two electrodes system with 2D cylindrical symmetry and a complex nanoelectrode array, where the biomolecule is represented by a dielectric and charged rod, is calculated for different positions and orientations of the strand. DNA and PNA hybridization is also considered. The results provide indications on optimum detection conditions for admittance based DNA biosensors.
Keywords:Nanoelectrode capacitive biosensor  DNA biosensor  3D numerical simulation  Optimum detection conditions
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