Literature DB >> 29594448

A multimodal impedimetric sensor for humidity and mechanical pressure using a nanosized SnO2-Mn3O4 mixed oxide.

Sher Bahadar Khan1, Kh S Karimov2,3, Alaud Din4, Kalsoom Akhtar5.   

Abstract

The authors describe a sensor based on the deposition of the binary oxide SnO2-Mn3O4 between copper electrodes fixed on a glass substrate. The impedance of the sensor is shown to strongly depend on relative humidity (RH) and mechanical pressure. A silicone adhesive was added to the binary oxide nanomaterials and investigated with respect to its effect on the sensing performance. The impedance of the material decreases by a factor of 54.7 with increasing RH in the range of 10-90% in pristine SnO2-Mn3O4 nanorods, but 29.6 times in SnO2-Mn3O4 nanocomposites. Capacitance increases 390 times in pristine SnO2-Mn3O4 and 26.6 times in SnO2-Mn3O4 silicone nanocomposite at 100 Hz on going from 10 to 90% RH. Similarly, the impedance of the sensor also depends on mechanical pressure. The impedance of the material decreases by 80% on applying a mechanical pressure of 11.0 kN·m-2, while capacitance increases by 70% at the same pressure. Graphical abstract A multimodal sensor was fabricated using SnO2-Mn3O4 mixed oxide and its nanocomposite with silicon adhesive. The impedance of the material decreases while capacitance increases much more with increase in relative humidity and applying a mechanical pressure in SnO2-Mn3O4 mixed oxide as compared to SnO2-Mn3O4 nanocomposite.

Entities:  

Keywords:  Binary oxide adhesive; Capacitance; Impedance; Nanocomposite; Nanomaterial; Resistance; Sensitivity

Year:  2017        PMID: 29594448     DOI: 10.1007/s00604-017-2584-6

Source DB:  PubMed          Journal:  Mikrochim Acta        ISSN: 0026-3672            Impact factor:   5.833


  3 in total

1.  Remote query measurement of pressure, fluid-flow velocity, and humidity using magnetoelastic thick-film sensors.

Authors:  C A Grimes; D Kouzoudis
Journal:  Sens Actuators A Phys       Date:  2000-09-01       Impact factor: 3.407

2.  Humidity and temperature sensing properties of copper oxide-Si-adhesive nanocomposite.

Authors:  Sher Bahadar Khan; Muhammad Tariq Saeed Chani; Kh S Karimov; Abdullah M Asiri; Mehran Bashir; Rana Tariq
Journal:  Talanta       Date:  2013-12-10       Impact factor: 6.057

3.  Optical fiber relative humidity sensor based on a FBG with a di-ureasil coating.

Authors:  Sandra F H Correia; Paulo Antunes; Edison Pecoraro; Patrícia P Lima; Humberto Varum; Luis D Carlos; Rute A S Ferreira; Paulo S André
Journal:  Sensors (Basel)       Date:  2012-06-27       Impact factor: 3.576

  3 in total

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