Electrochemical Determination of Propiconazole Residues in Grain samples by Voltammetry at Carbon Nanotubes Paste Electrodes

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K.Sivasankar
K.Sivasankar
2
T.Raveendranath Babu
T.Raveendranath Babu
1 RAYALASEEMA UNIVERSITY

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Electrochemical Determination of Propiconazole Residues in Grain samples by Voltammetry at Carbon Nanotubes Paste Electrodes Banner
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In this study the residues of propiconazole in grains samples determined on the basis of its reduction behavior at carbon nanotubes paste electrodes.The reduction product is identified by using cyclic voltammetry and the universal buffer with pH range 2.0-6.0 is used as supporting electrolyte. The best curve and highest peak current are obtained in universal buffer at pH 4.0. Accumulation potential,Accumulationtime and Scanrate were optimized. Calculations made of by standard addition method. The peak heights are in linear trend over the concentration range of 1.02 x 10 -9 to 1.05 x 10 -10 M. The relative standard deviation and correlation coefficient for propinacazole is 0.97% and 0.998 respectively.

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No external funding was declared for this work.

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The authors declare no conflict of interest.

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No ethics committee approval was required for this article type.

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K.Sivasankar. 2018. \u201cElectrochemical Determination of Propiconazole Residues in Grain samples by Voltammetry at Carbon Nanotubes Paste Electrodes\u201d. Global Journal of Science Frontier Research - B: Chemistry GJSFR-B Volume 18 (GJSFR Volume 18 Issue B2): .

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Crossref Journal DOI 10.17406/GJSFR

Print ISSN 0975-5896

e-ISSN 2249-4626

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GJSFR-B Classification: FOR Code: 039999
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v1.2

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May 4, 2018

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English

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In this study the residues of propiconazole in grains samples determined on the basis of its reduction behavior at carbon nanotubes paste electrodes.The reduction product is identified by using cyclic voltammetry and the universal buffer with pH range 2.0-6.0 is used as supporting electrolyte. The best curve and highest peak current are obtained in universal buffer at pH 4.0. Accumulation potential,Accumulationtime and Scanrate were optimized. Calculations made of by standard addition method. The peak heights are in linear trend over the concentration range of 1.02 x 10 -9 to 1.05 x 10 -10 M. The relative standard deviation and correlation coefficient for propinacazole is 0.97% and 0.998 respectively.

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Electrochemical Determination of Propiconazole Residues in Grain samples by Voltammetry at Carbon Nanotubes Paste Electrodes

K.Sivasankar
K.Sivasankar RAYALASEEMA UNIVERSITY
T.Raveendranath Babu
T.Raveendranath Babu

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