Carbon Nanotubes Blended Hydroxyapatite Ethanol Sensor

Author:

Anjum S. R.,Khairnar R. S.

Funder

UGC Innovative Project

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,Instrumentation

Reference20 articles.

1. Mishra, P., Harsh., & Islam, S. S. (2013). Trace level ammonia sensing by SWCNTs (network/film) based resistive sensor using a simple approach in sensor development and design. International Nano Letters, 3(46), 1–9.

2. Chatchawal, W., Anurat, W., Adisorn, T., & Teerakiat, K. (2010). Portable electronic nose based on carbon nanotubes-SnO2 gas sensors and its application for detection of methanol contamination in whiskeys. Sensors and Actuators B: Chemical, 147, 392–399.

3. Zhang, Q., Liu, Y., Zhang, Y., Li, H., Tan, Y., Luo, L., et al. (2015). Facile and controllable synthesis of Hydroxyapatite/graphene hybrid materials with enhanced sensing performance towards ammonia. Analyst, 140, 5235–5242.

4. Khairnar, R. S., Anjum, S. R., & Mahabole, M. P. (2014). Development of CNT doped nano-HAp thick film gas sensor. International Journal of Engineering Science and Innovative Technology, 3(3), 253–261.

5. Khairnar, R. S., Anjum, S. R., Kokol, V., & Mahabole, M. P. (2014). Carbon nano tube doped nano-hydroxyapatite sensor matrix for gas sensing application. International Journal of Modern Communication Technologies & Research, 2(4), 29–34.

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