4.7 Article

Highly sensitive formaldehyde chemical sensor based on hydrothermally prepared spinel ZnFe2O4 nanorods

Journal

SENSORS AND ACTUATORS B-CHEMICAL
Volume 171, Issue -, Pages 932-937

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2012.06.006

Keywords

Spinel ZnFe2O4 nanorods; Hydrothermal method; I-V technique; Formaldehyde chemi-sensors; Sensitivity

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A considerable effort has been made for the growth and development of face-centered-cubic spinet zinc ferrite (ZnFe2O4) nanorods using hydrothermal method at room conditions. The structural, optical and chemical properties of ZnFe2O4 nanorods were characterized using various methods such as UV/visible, Fourier transform infrared spectroscopy, Raman spectroscopy, powder X-ray diffraction, and field-emission scanning electron microscopy etc. Spinel ZnFe2O4 is an attractive nanorods for potential application in chemical sensing by easy and reliable I-V method, where formaldehyde is considered as a model compound. The chemical sensor performances are exhibited the higher sensitivity, good stability, and repeatability of the sensor enhanced significantly using spinel ZnFe2O4 nanorods of thin-film with conducting binders on silver electrodes (AgE). The calibration plot is linear over the large dynamic range, where the sensitivity (similar to 4.10 +/- 0.05 mu A cm(-2) mM(-1)) and detection limit (similar to 0.0089 mu M) were calculated based on signal/noise ratio (similar to(3N)/S) in short response time. Finally, it is concluded that the structural and optical characteristics could be encompassed to a broad-scale in spinel ZnFe2O4 nanorods and efficient chemical sensor applications for environmental and healthcare fields. (C) 2012 Elsevier B.V. All rights reserved.

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