DocumentCode :
85170
Title :
Inverse piezoelectricity of single-stranded DNA film on microcantilever
Author :
Neng-Hui Zhang
Author_Institution :
Shanghai Key Lab. of Mech. in Energy Eng., Shanghai Univ., Shanghai, China
Volume :
22
Issue :
3
fYear :
2015
fDate :
Jun-15
Firstpage :
1376
Lastpage :
1380
Abstract :
The paper aims to reveal the relation between the inverse piezoelectricity of single-stranded DNA (ssDNA) film and the origin and sign of the deflection of microcantilever produced by the DNA immobilization. By using Zhang´s two-variable method for strain field of laminated beam and the linearized Poisson-Boltzmann equation for bioelectric potential of polyelectrolyte brush, an approximate model is presented to confirm the previous conjecture that the sign of the piezoelectric constant of ssDNA film might decide the sign of the surface stress. There is only one fitting parameter (piezoelectric stress constant) needed in the simplified model, which greatly reduces the difficulty of identifying the nanoscale electrical/mechanical properties of DNA film. Numerical fitting curves based-on the analytical models agree well with the pertinent experimental dada. The difference between the previous four-layered model and the present two-layered approximate model is also compared.
Keywords :
DNA; bioMEMS; bioelectric potentials; biosensors; cantilevers; molecular biophysics; numerical analysis; piezoelectricity; DNA film nanoscale electrical properties; DNA film nanoscale mechanical properties; DNA immobilization; Zhang two-variable method; bioelectric potential; inverse piezoelectricity; linearized Poisson-Boltzmann equation; microcantilever; numerical fitting curves; piezoelectric stress constant; polyelectrolyte brush; single-stranded DNA film; ssDNA film; two-layered approximate model; Biological system modeling; DNA; Films; Fitting; Mathematical model; Piezoelectricity; Stress; Approximation methods; Bioelectric potentials; Biomedical transducers; Curve fitting; DNA; Flexible structures; Modeling; Piezoelectricity; Strain;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2015.7116325
Filename :
7116325
Link To Document :
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