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Ferrocene ormosil

V.B. Kandimalla, V.S. Tripathi, and H.X. Ju, A conductive ormosil encapsulated with ferrocene conjugate and multiwall carbon nanotubes for biosensing application. Biomaterials 27,1167-1174 (2006). [Pg.549]

P.C. Pandey, S. Upadhyay, N.K. Shukla, and S. Sharma, Studies on the electrochemical performance of glucose biosensor based on ferrocene encapsulated ORMOSIL and glucose oxidase modified graphite paste electrode. Biosens. Bioelectron. 18,1257—1268 (2003). [Pg.549]

V.S. Tripadii, V.B. Kandimalla, and H.X. Ju, Amperometric biosensor for hydrogen peroxide based on ferrocene-bovine serum albumin and multiwall carbon nanotube modified ormosil composite. Biosens. Bioelectwn. 21,1529-1535 (2006). [Pg.528]

Figure 3, Cyclic voltammograms of 5 mM ferrocene monocarboxylic acid in 0.1 M phosphate buffer pH 7.1 on glucose oxidase encapsulated ormosil at 25 C and at the scan rate of3, 6,10, 20, 50 100 mV/s. The... Figure 3, Cyclic voltammograms of 5 mM ferrocene monocarboxylic acid in 0.1 M phosphate buffer pH 7.1 on glucose oxidase encapsulated ormosil at 25 C and at the scan rate of3, 6,10, 20, 50 100 mV/s. The...
Figure 5. Calibration curves for the analysis of Na and NHf ions using ion sensor made from bilayer of ferrocene-linked ormosil and dibenzo-18-crown-6 incorporated plasticized poly (vinyl chloride) matrix membrane. Figure 5. Calibration curves for the analysis of Na and NHf ions using ion sensor made from bilayer of ferrocene-linked ormosil and dibenzo-18-crown-6 incorporated plasticized poly (vinyl chloride) matrix membrane.
Figure 6. Cyclic voltammetry of ferrocene encapsulated Pd-ormosil in 0,1 M phosphate buffer pH 7.0 at the scan rate of 3, 6, 10, 20 and 100 mV/s. The inset shows the plot of peak current vs. square root of scan rate. Fig. 7. A typical amperometric response of ferrocene encapsulated Pd-ormosil electrode on the addition of varying concentration ofNADH in 0.1 M phosphate buffer pH 7.0. The inset shows the calibration curve for NADH analysis based on mediated bioelectrochemistry. Figure 6. Cyclic voltammetry of ferrocene encapsulated Pd-ormosil in 0,1 M phosphate buffer pH 7.0 at the scan rate of 3, 6, 10, 20 and 100 mV/s. The inset shows the plot of peak current vs. square root of scan rate. Fig. 7. A typical amperometric response of ferrocene encapsulated Pd-ormosil electrode on the addition of varying concentration ofNADH in 0.1 M phosphate buffer pH 7.0. The inset shows the calibration curve for NADH analysis based on mediated bioelectrochemistry.
Figure Z >1 typical amperometric response of ferrocene encapsulated Pd ormosil electrode on the addition of varying concentration ofNADH in 0,1 M phosphate buffer pH 7,0, The inset shows the calibration curve for NADH analysis based on mediated bioelectrochemistry. Figure Z >1 typical amperometric response of ferrocene encapsulated Pd ormosil electrode on the addition of varying concentration ofNADH in 0,1 M phosphate buffer pH 7,0, The inset shows the calibration curve for NADH analysis based on mediated bioelectrochemistry.

See other pages where Ferrocene ormosil is mentioned: [Pg.534]    [Pg.535]    [Pg.538]    [Pg.511]    [Pg.512]    [Pg.515]    [Pg.401]    [Pg.511]    [Pg.512]    [Pg.515]    [Pg.139]    [Pg.141]    [Pg.141]    [Pg.142]    [Pg.142]    [Pg.144]    [Pg.149]    [Pg.151]    [Pg.151]    [Pg.152]    [Pg.152]    [Pg.154]   
See also in sourсe #XX -- [ Pg.152 , Pg.154 ]




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