Araştırma Makalesi

Design and Prototype Development of a Sensor Structure for Gas Sensing Applications

Cilt: 7 Sayı: 1 16 Haziran 2026
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Design and Prototype Development of a Sensor Structure for Gas Sensing Applications

Öz

The study of gas-sensitive materials and sensor fabrication techniques are among the great interest research topic today with the increasing interest in sensitive and low-cost gas sensing processes. In this study, a gas sensor developed with polyaniline (PANI) films as a sensing layer for NH3 detection and performed. Sensors were fabricated using a PCB fabrication method with three different interdigitated electrode (IDT) geometries, in which geometries has 5, 10, 20 IDT fingers. The electrical resistance of the sensors was monitored during gas sensing process. The resistance increased rapidly, reaching a maximum in 120 seconds and then returned to the baseline in 600 seconds, exhibiting a stable response pattern. From these measurements, the response time and recovery time were determined to be 120 seconds and 480 seconds, respectively. The findings showed that although the properties of the material constituting the sensing layer significantly affect the sensor performance, changes in the electrode geometry have a limited effect on the gas sensing behavior. PANI offer practical and efficient approach for gas sensing applications as NH₃ detection and it provides a suitable, reliable and low-cost solution for environmental and biomedical monitoring applications.

Anahtar Kelimeler

Destekleyen Kurum

Tübitak

Proje Numarası

1919B012324296

Teşekkür

Bu çalışma, Muammer IRGE ve Ekrem AYDIN'in lisans araştırma projesi olan 1919B012324296 numaralı proje kapsamında TÜBİTAK 2209-A araştırma projesi destek programı tarafından desteklenmiştir.

Kaynakça

  1. Aalam, S. M., Farooq, A., Sarvar, M., Bhat, M. N., Tomar, M., Raza, M. M. H., & Ali, J. (2025). To study the performance of polyaniline-based copper and carbon-nanotube (PANI@ Cu@ CNT) nanocomposite for harmful NH3 gas sensing. Scientific Reports, 15(1), 26886.
  2. Bard, A. J., Faulkner, L. R., & White, H. S. (2022). Electrochemical methods: fundamentals and applications. John Wiley & Sons.
  3. Daniels, J. S., & Pourmand, N. (2007). Label‐free impedance biosensors: Opportunities and challenges. Electroanalysis: An International Journal Devoted to Fundamental and Practical Aspects of Electroanalysis, 19(12), 1239-1257.
  4. Dube, A., Malode, S. J., Alodhayb, A. N., Mondal, K., & Shetti, N. P. (2025). Conducting polymer-based electrochemical sensors: Progress, challenges, and future perspectives. Talanta open, 11, 100395.
  5. Guruprasad, B., & Veena, M. G. (2022). Analysis of MEMS cantilever sensor for sensing volatile organic compounds. Micro and Nano Engineering, 16, 100143.
  6. Jin, X., Xu, Z., Wang, B., Ding, S., Ma, J., Cui, M., Wang, C., Jiang, Y., Liu, J., & Zhang, X. (2023). A highly sensitive and wide-range pressure sensor based on orientated and strengthened TPU nanofiber membranes fabricated by a conjugated electrospinning technology. Chemical Engineering Journal Advances, 14, 100491.
  7. Khaleque, M. A., Aly, M. A. S., & Khan, M. Z. H. (2025). Chemical and electrochemical synthesis of doped conducting polymers and their application in supercapacitors: An overview. Chemical Engineering Journal, 507, 160444.
  8. Kim, D., Shin, W., Hong, S., Jeong, Y., Jung, G., Park, J., & Lee, J. H. (2022). Effects of electrode structure on H2S sensing and low-frequency noise characteristics in In2O3-based resistor-type gas sensors. IEEE Sensors Journal, 22(7), 6311-6320.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Elektronik Cihaz ve Sistem Performansı Değerlendirme, Test ve Simülasyon

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

16 Haziran 2026

Gönderilme Tarihi

22 Ekim 2025

Kabul Tarihi

20 Şubat 2026

Yayımlandığı Sayı

Yıl 2026 Cilt: 7 Sayı: 1

Kaynak Göster

APA
Konuk Ege, G., İrge, M., & Aydın, E. (2026). Design and Prototype Development of a Sensor Structure for Gas Sensing Applications. Journal of Materials and Mechatronics: A, 7(1), 76-86. https://doi.org/10.55546/jmm.1808591
AMA
1.Konuk Ege G, İrge M, Aydın E. Design and Prototype Development of a Sensor Structure for Gas Sensing Applications. J. Mater. Mechat. A. 2026;7(1):76-86. doi:10.55546/jmm.1808591
Chicago
Konuk Ege, Gözde, Muammer İrge, ve Ekrem Aydın. 2026. “Design and Prototype Development of a Sensor Structure for Gas Sensing Applications”. Journal of Materials and Mechatronics: A 7 (1): 76-86. https://doi.org/10.55546/jmm.1808591.
EndNote
Konuk Ege G, İrge M, Aydın E (01 Haziran 2026) Design and Prototype Development of a Sensor Structure for Gas Sensing Applications. Journal of Materials and Mechatronics: A 7 1 76–86.
IEEE
[1]G. Konuk Ege, M. İrge, ve E. Aydın, “Design and Prototype Development of a Sensor Structure for Gas Sensing Applications”, J. Mater. Mechat. A, c. 7, sy 1, ss. 76–86, Haz. 2026, doi: 10.55546/jmm.1808591.
ISNAD
Konuk Ege, Gözde - İrge, Muammer - Aydın, Ekrem. “Design and Prototype Development of a Sensor Structure for Gas Sensing Applications”. Journal of Materials and Mechatronics: A 7/1 (01 Haziran 2026): 76-86. https://doi.org/10.55546/jmm.1808591.
JAMA
1.Konuk Ege G, İrge M, Aydın E. Design and Prototype Development of a Sensor Structure for Gas Sensing Applications. J. Mater. Mechat. A. 2026;7:76–86.
MLA
Konuk Ege, Gözde, vd. “Design and Prototype Development of a Sensor Structure for Gas Sensing Applications”. Journal of Materials and Mechatronics: A, c. 7, sy 1, Haziran 2026, ss. 76-86, doi:10.55546/jmm.1808591.
Vancouver
1.Gözde Konuk Ege, Muammer İrge, Ekrem Aydın. Design and Prototype Development of a Sensor Structure for Gas Sensing Applications. J. Mater. Mechat. A. 01 Haziran 2026;7(1):76-8. doi:10.55546/jmm.1808591