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Deepshikha - CEMI Presentation


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- lowering the detection potential and enhancing the stability of the enzym e.
- Effect of concentration of oxidizing agent on the properties of NSPANI.
- oxidizing agent is in the range of 0.01-0.03M..
- Effect of concentration of monomer on the properties of NSPANI.
- Smallest size, uniform size distribution and the highest conductivity are obtained when monomer concentration is in the.
- range of 0.01-0.03M..
- Effect of concentration of structure directing agent on the properties of NSPANI.
- concentration is in the range of 0.06-0.08M..
- nanostructured conducting polyaniline.
- Marked decrease in the anodic and cathodic peak current upon immobilization of.
- Polymerization of aniline in the.
- GoX/NSPANI.
- oxidized form of dye was found to be increasing linearly in the range of 5 mM/l to 40 mM/l for GoX/NSPANI where as bulk PANI exhibits linearity between 5-20mM..
- GOx/NSPANI.
- Name of the bioelectrode.
- GoX/NSPANI 0.28 5to40 30 0.1.
- Effect of pH on GoX/NSPANI/ITO bioelectrode.
- The higher value of the absorbance obtained at pH 7.0 indicates.
- GoX/NSPANI/ITO bioelectrode is the most active at pH 7.0..
- Effect of interference on GoX/NSPANI/.
- The results indicate the negligible effect of these interferants on the photometric response of.
- GoX/NSPANI/ITO electrode..
- GoX /NSPANI/ITO based optical biosensor retains its 90% activity after 15 days..
- The loss in the activity of biosensor is not due to the denaturation of enzyme but it is due to the poor adhesion of cast NSPANI film on the ITO electrode..
- The value of absorbance resulting from the oxidized form of dye has been found to be increasing linearly in the range of 1 mM/l to 50 mM/l for HRP/NSPANI where as the bulk PANI, exhibits.
- Name of the samples.
- HRP/NSPANI 1.06 1 to .
- With slight variation from the optimum condition of polymerization causes a drastic change in the electrochemical properties..
- Jackowska K, Template synthesis of polyaniline and poly(2-methoxyaniline) nanotubes: comparison of the formation mechanisms, Electrochemistry Communications

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