Please use this identifier to cite or link to this item: http://dspace.unimap.edu.my:80/xmlui/handle/123456789/33957
Title: Impact of hydrogen concentrations on the impedance spectroscopic behavior of Pd-sensitized ZnO nanorods
Authors: Muhammad Kashif, Muhammad Faroow
Md. Eaqub, Ali, Dr.
Syed Muhammad Usman, Ali Shah, Dr.
Uda, Hashim, Prof. Dr.
Sharifah Bee, O.A Abd Hamid, Prof. Dr.
kashif_bme@yahoo.com
eaqubali@um.edu.my
uashah68@neduet.edu.pk
uda@unimap.edu.my
sharifahbee@um.edu.my
Keywords: Impedance behavior
Nyquist plot
Pd-sensitized ZnO nanorods
Sol-gel
Issue Date: 2013
Publisher: Licensee Springer
Citation: Nanoscale Research Letters, vol. 8(1), 2013, pages 1-9
Abstract: ZnO nanorods were synthesized using a low-cost sol-gel spin coating technique. The synthesized nanorods were consisted of hexagonal phase having c-axis orientation. SEM images reflected perpendicular ZnO nanorods forming bridging network in some areas. The impact of different hydrogen concentrations on the Pd-sensitized ZnO nanorods was investigated using an impedance spectroscopy (IS). The grain boundary resistance (Rgb) significantly contributed to the sensing properties of hydrogen gas. The boundary resistance was decreased from 11.95 to 3.765 kΩ when the hydrogen concentration was increased from 40 to 360 ppm. IS gain curve showed a gain of 6.5 for 360 ppm of hydrogen at room temperature. Nyquist plot showed reduction in real part of impedance at low frequencies on exposure to different concentrations of hydrogen. Circuit equivalency was investigated by placing capacitors and resistors to identify the conduction mechanism according to complex impedance Nyquist plot. Variations in nanorod resistance and capacitance in response to the introduction of various concentrations of hydrogen gas were obtained from the alternating current impedance spectra.
Description: Link to publisher's homepage at http://www.springeropen.com/
URI: http://www.nanoscalereslett.com/content/8/1/68
http://dspace.unimap.edu.my:80/dspace/handle/123456789/33957
ISSN: 1931-7573
Appears in Collections:Uda Hashim, Prof. Ts. Dr.
Institute of Nano Electronic Engineering (INEE) (Articles)



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