CSIR Central

Amperometric enzymatic determination of bisphenol A using an ITO electrode modified with reduced graphene oxide and Mn3O4 nanoparticles in a chitosan matrix

IR@NPL: CSIR-National Physical Laboratory, New Delhi

View Archive Info
 
 
Field Value
 
Title Amperometric enzymatic determination of bisphenol A using an ITO electrode modified with reduced graphene oxide and Mn3O4 nanoparticles in a chitosan matrix
 
Creator Reza, K. Kamil
Ali, Md. Azahar
Singh, Manish Kumar
Agrawal, Ved Varun
Biradar, A. M.
 
Subject Analytical Chemistry
 
Description The authors describe a nanostructured hybrid platform for amperometic determination of the plasticizer bisphenol A (BPA). It consists of two dimensional sheets of reduced graphene oxide (rGO) that are decorated with Mn3O4 nanoparticles. The enzyme tyrosinase was immobilized on the surface of the hybrid nanosheets placed on an ITO electrode. The larger surface area and enhanced charge transfer properties of the rGO/Mn3O4 nanosheets provide a synergistic effect that results in excellent sensing performance including fast electron transfer kinetics, high electroactivity, good reproducibility and selectivity compared to other electrodes of that kind. Figures of merit include a sensitivity of 93.2 mu Aai...nM(-1)ai...cm(-2), an analytical range that extends from 0.01 to 100 mu M, and a 10 nM lower detection limit. Its long-term stability of 8 weeks suggests the use of such enzyme electrodes as potential tools in clinical diagnostics.
 
Publisher Springer Verlag (Germany)
 
Date 2017-06
 
Type Article
PeerReviewed
 
Format application/pdf
 
Identifier http://npl.csircentral.net/2600/1/Amperometric%20enzymatic%20determination%20of%20bisphenol%20A%20using%20an%20ITO%20electrode%20modified%20with%20reduced%20graphene%20oxide%20and%20Mn3O4%20nanoparticles%20in%20a%20chitosan%20matrix.pdf
Reza, K. Kamil and Ali, Md. Azahar and Singh, Manish Kumar and Agrawal, Ved Varun and Biradar, A. M. (2017) Amperometric enzymatic determination of bisphenol A using an ITO electrode modified with reduced graphene oxide and Mn3O4 nanoparticles in a chitosan matrix. Microchimica Acta, 184 (6). pp. 1809-1816. ISSN 0026-3672
 
Relation http://npl.csircentral.net/2600/