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https://doi.org/10.5772/50962

Deposition of Pristine and Functionalized MWCNTs in Alumina Matrix by Sol-Gel Technique and Investigation of their Ammonia Sensing Properties

Sakshi Sharma ; Nano-Sensor Research Laboratory, Faculty of Engineering and Technology, Jamia Millia Islamia (Central University), New Delhi, India
K. Sengupta ; Nano-Sensor Research Laboratory, Faculty of Engineering and Technology, Jamia Millia Islamia (Central University), New Delhi, India
S. S. Islam ; Nano-Sensor Research Laboratory, Faculty of Engineering and Technology, Jamia Millia Islamia (Central University), New Delhi, India


Puni tekst: engleski pdf 1.485 Kb

str. 2-4

preuzimanja: 576

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Sažetak

MWCNTs produced by using Chemical Vapor Deposition (CVD) technique were functionalized with nitric and sulfuric acid to ensure a good dispersion in an aqueous solution. The FTIR analysis further confirmed the presence of carboxyl and hydroxyl groups on the surface of MWCNTs after acid treatment. The two types of MWCNTs composites were prepared using pristine and functionalized MWCNTs (p‐MWCNTs and f‐MWCNTs) in alumina matrix by sol‐gel processing and to the best of our knowledge it is a new approach in the field of CNT based ammonia gas sensors. The Raman analysis showed that both the pristine and functionalized MWCNTs retain its pristine characteristics in alumina matrix even after the sol‐gel processing. A precisional electronic circuit was developed to measure the sensing response of these two composite samples to detect ammonia gas and a detailed comparative analysis was done. While comparing the sensing performance, the functionalized MWCNTs composite sample was found to be more sensitive to ammonia gas with short response time but did not recover at room temperature because of
the strong bonding between ammonia molecule and oxygen containing groups on the surface of MWCNTs.

Ključne riječi

carbon nanotubes; sol-gel process; functionalization; gas sensor

Hrčak ID:

142863

URI

https://hrcak.srce.hr/142863

Datum izdavanja:

1.1.2012.

Posjeta: 1.002 *