Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/5843
Title: Facile hydrothermal synthesis of mn doped ZnO nanopencils for development of amperometric glucose biosensors
Authors: Shukla, Mayoorika
Pramila
Agrawal, Jitesh
Dixit, Tejendra
Palani, Anand Iyamperumal
Singh, Vipul
Keywords: Biosensors;Charge transfer;Electrolytes;Glucose;Glucose sensors;Hydrothermal synthesis;II-VI semiconductors;Nanorods;Potash;Sensitivity analysis;Temperature;Zinc oxide;Electrochemical biosensor;Electrochemical charge;Electrode-electrolyte interfaces;KMnO4;Mn-doped ZnO;Morphological variation;sensitivity;ZnO nanorod;Manganese
Issue Date: 2018
Publisher: Institute of Physics Publishing
Citation: Shukla, M., Pramila, Agrawal, J., Dixit, T., Palani, I. A., & Singh, V. (2018). Facile hydrothermal synthesis of mn doped ZnO nanopencils for development of amperometric glucose biosensors. Materials Research Express, 5(5) doi:10.1088/2053-1591/aac339
Abstract: Mn doped ZnO nanopencils were synthesized via low temperature hydrothermal process for fabrication of enzymatic electrochemical glucose biosensor. The KMnO4 was found to play a dual role in modifying morphology and inducing Mn doping. Interestingly, two different types of morphologies viz nanorods and nanopencils along with Mn doping in the later were obtained. Incorporation of Mn has shown a tremendous effect on the morphological variations, repression of defects and electrochemical charge transfer at electrode electrolyte interface. The possible reason behind obtained morphological changes has been proposed which in turn were responsible for the improvement in the different figure of merits of as fabricated enzymatic electrochemical biosensor. There has been a 17 fold enhancement in the sensitivity of the as fabricated glucose biosensor from ZnO nanorods to Mn doped ZnO nanopencils which can be attributed to morphological variation and Mn doping. © 2018 IOP Publishing Ltd.
URI: https://doi.org/10.1088/2053-1591/aac339
https://dspace.iiti.ac.in/handle/123456789/5843
ISSN: 2053-1591
Type of Material: Journal Article
Appears in Collections:Department of Electrical Engineering

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