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[30] Khan A, Khan AAP, Rahman MM, Asiri AM, Al-Youbi AO. Toward designing efficient
rice-shaped polyaniline@bismuth oxide nanocomposites for sensor application. J Sol-Gel
Sci Technol 2015;76:519–28.
[31] Sharma S, Hussain S, Singh S, Islam SS. MWCNT-conducting polymer composite based
ammonia gas sensors: a new approach for complete recovery process. Sens Actuators B
2014;194:213–9.
[32] Navale ST, Khuspe GD, Chougule MA, Patil VB. Polypyrrole, α-Fe 2 O 3 and their hybrid
nanocomposite sensor: an impedance spectroscopy study. Org Electron 2014;15:2159–67.
[33] Das R, Biswas S, Bandyopadhyay R, Pramanik P. Polymerised linseed oil coated quartz
crystal microbalance for the detection of volatile organic vapours. Sens Actuators B
2013;185:293–300.
[34] Das R, Bandyopadhyay R, Pramanik P. Efficient detection of volatile aromatic hydrocar-
bon using linseed oil-styrene-divinylbenzene copolymer coated quartz crystal microbal-
ance. RSC Adv 2015;5:59533–40.
[35] Das R, Pradhan S, Biswas S, Sharma P, Ghosh A, Bandyopadhyay R, et al. Aliphatic
amines vapours detection by quartz crystal microbalance sensor. Sens Actuators B
2014;198:94–101.
[36] Das R, Pramanik P, Bandyopadhyay R. Polymerization of natural oils for quartz crystal
microbalance based gas sensor application, advances in polymers and composites
research. Apple Academic Press; CRC Press; 2017.
Further reading
[1] Shrivastava S, Jadon N, Jain R. Next generation polymer nanocomposites based electro-
chemical sensors and biosensors: a review. Trends Anal Chem 2016;82:55–7.
[2] Fratoddi I, Bearzotti A, Venditti I, Cametti C, Russo MV. Role of nanostructured polymers
on the improvement of electrical response-based relative humidity sensors. Sens Actuators
B 2016;225:96–108.
[3] Joshi N, Rawat K, Solanki PR, Bohidar HB. Enzyme-free and biocompatible
nanocomposites based cholesterol sensor. Biochem Eng J 2015;102:69–73.