Design of n-WO3 Thin Film Hydrogen Sensor with IoT Technology

Author:

Roy Subhashis,Biswas Bikram,Kantha Bijoy,Nayak Manas Ranjan

Publisher

Springer Singapore

Reference10 articles.

1. Bhattacharya, P., Mishra, G.P., Sarkar, S.K.: The effect of Pd surface modification and catalytic metal contact on methane sensing performance of nanoZnO-Si hetero junction. Microelectron. Reliab. (Elsevier) 51, 2185–2194 (2011)

2. Mishra, G.P., Sengupta, A., Maji, S., Bhattacharyya, P., Sarkar, S.K.: The effect of catalytic metal contact on methane sensing performance of nanoporous ZnO-Si heterojunction. Int. J. Smart Sens. Intell. Syst. 3(2), 273–279 (2010)

3. Kantha, B., Roy, S., Sarkar, S.K.: Implementation of Pd modified WO3 thin film gas sensing system with Bulk-CMOS and SOI-CMOS for monitoring leakage of hydrogen gas. J. Nanoelectron. Optoelectron. 10, 74–81 (2015)

4. Kantha, B., Sarkar, S.K.: The design of a low power MEMS based micro-hotplate device using a novel nickel alloy for gas sensing applications. J. Nano-and Electron. Phys. 6, 01004-1–01004-5 (2014)

5. Dey, A., Sarkar, S.K.: Room temperature ZnO and Au-ZnO quantum dots thin film gas sensor fabrication for detecting of volatile organic compound gases. IEEE Sens. J. 20(21), 12602–12609 (2020)

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