« Previous Article

Original Research
Online Published: 11 Mar 2020

Published online: 11 Mar 2020
 


Vanadium Complex (VO2(3-fl)) Films Based Resistive Temperature Sensor

Khasan S. Karimov, Mohammad M. Tahir, Muhammad Saleem, Muhammad Tariq S. Chani, Atif K. Niaz.

SUPPLEMENTARY FILES :

  • Supplementary file - 1

  • Abstract
    A resistive-type temperature sensor based on vanadium complex (VO2(3-fl)) film is reported in this study. Silver electrodes were deposited on the glass substrates in a co-planar structure. A thin film of vanadium complex (VO2(3-fl)) was coated as a temperaturesensing material on the top of the pre-patterned electrodes. The temperature-sensing principle of the sensor was based on the conductivity change of coated sensing element upon heating or cooling processes. The resistance of the temperature sensor, measured at 100 Hz, decreased exponentially with increasing the temperature in the range of 25−80 oC. The overall resistance of the sensor decreases in
    3.7−4.5 times. The resistance temperature coefficients of the sensor were in the range of 3.2 to 3.6%. The properties of the sensor studied in this work, make it beneficial to be used in the instruments for environmental monitoring of temperature.

    Key words: Vanadium complex, thin film, teperature sensor, resistance


     
    ARTICLE TOOLS
    Abstract
    PDF Fulltext
    How to cite this articleHow to cite this article
    Citation Tools
    Related Records
     Articles by Khasan S. Karimov
    Articles by Mohammad M. Tahir
    Articles by Muhammad Saleem
    Articles by Muhammad Tariq S. Chani
    Articles by Atif K. Niaz
    on Google
    on Google Scholar


    How to Cite this Article
    Pubmed Style

    Karimov KS, Tahir MM, Saleem M, Chani MTS, Niaz AK. Vanadium Complex (VO2(3-fl)) Films Based Resistive Temperature Sensor. Journal of Engineering and Applied Sciences. 2017; 4(2): 6-9. doi:10.5455/jeas.2017110102


    Web Style

    Karimov KS, Tahir MM, Saleem M, Chani MTS, Niaz AK. Vanadium Complex (VO2(3-fl)) Films Based Resistive Temperature Sensor. https://jecasmu.org/?mno=91883 [Access: September 15, 2025]. doi:10.5455/jeas.2017110102


    AMA (American Medical Association) Style

    Karimov KS, Tahir MM, Saleem M, Chani MTS, Niaz AK. Vanadium Complex (VO2(3-fl)) Films Based Resistive Temperature Sensor. Journal of Engineering and Applied Sciences. 2017; 4(2): 6-9. doi:10.5455/jeas.2017110102



    Vancouver/ICMJE Style

    Karimov KS, Tahir MM, Saleem M, Chani MTS, Niaz AK. Vanadium Complex (VO2(3-fl)) Films Based Resistive Temperature Sensor. Journal of Engineering and Applied Sciences. (2017), [cited September 15, 2025]; 4(2): 6-9. doi:10.5455/jeas.2017110102



    Harvard Style

    Karimov, K. S., Tahir, . M. M., Saleem, . M., Chani, . M. T. S. & Niaz, . A. K. (2017) Vanadium Complex (VO2(3-fl)) Films Based Resistive Temperature Sensor. Journal of Engineering and Applied Sciences, 4 (2), 6-9. doi:10.5455/jeas.2017110102



    Turabian Style

    Karimov, Khasan S., Mohammad M. Tahir, Muhammad Saleem, Muhammad Tariq S. Chani, and Atif K. Niaz. 2017. Vanadium Complex (VO2(3-fl)) Films Based Resistive Temperature Sensor. Journal of Engineering and Applied Sciences, 4 (2), 6-9. doi:10.5455/jeas.2017110102



    Chicago Style

    Karimov, Khasan S., Mohammad M. Tahir, Muhammad Saleem, Muhammad Tariq S. Chani, and Atif K. Niaz. "Vanadium Complex (VO2(3-fl)) Films Based Resistive Temperature Sensor." Journal of Engineering and Applied Sciences 4 (2017), 6-9. doi:10.5455/jeas.2017110102



    MLA (The Modern Language Association) Style

    Karimov, Khasan S., Mohammad M. Tahir, Muhammad Saleem, Muhammad Tariq S. Chani, and Atif K. Niaz. "Vanadium Complex (VO2(3-fl)) Films Based Resistive Temperature Sensor." Journal of Engineering and Applied Sciences 4.2 (2017), 6-9. Print. doi:10.5455/jeas.2017110102



    APA (American Psychological Association) Style

    Karimov, K. S., Tahir, . M. M., Saleem, . M., Chani, . M. T. S. & Niaz, . A. K. (2017) Vanadium Complex (VO2(3-fl)) Films Based Resistive Temperature Sensor. Journal of Engineering and Applied Sciences, 4 (2), 6-9. doi:10.5455/jeas.2017110102