Tapan Sarkar, Ph.D.
Affiliations: | 2012 | Chemical and Environmental Engineering | University of California, Riverside, Riverside, CA, United States |
Area:
Nanotechnology, Materials Science EngineeringGoogle:
"Tapan Sarkar"Parents
Sign in to add mentorAshok Mulchandani | grad student | 2012 | UC Riverside | |
(Carbon Nanostructure-Based Sensors.) |
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Publications
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Sarkar T, Ashraf PM, Srinives S, et al. (2018) Calixarene-functionalized single-walled carbon nanotubes for sensitive detection of volatile amines Sensors and Actuators B: Chemical. 268: 115-122 |
Sarkar T, Srinives S. (2018) Single-walled carbon nanotubes-calixarene hybrid for sub-ppm detection of NO2 Microelectronic Engineering. 197: 28-32 |
Sarkar T, Srinives S, Rodriquez A, et al. (2018) Single-walled Carbon Nanotube-Calixarene Based Chemiresistor for Volatile Organic Compounds Electroanalysis. 30: 2077-2084 |
Srinives S, Sarkar T, Hernandez R, et al. (2017) Potassium Iodide-Functionalized Polyaniline Nanothin Film Chemiresistor for Ultrasensitive Ozone Gas Sensing. Polymers. 9 |
Srinives S, Sarkar T, Hernandez R, et al. (2015) A miniature chemiresistor sensor for carbon dioxide. Analytica Chimica Acta. 874: 54-8 |
Sarkar T, Srinives S, Sarkar S, et al. (2014) Single-walled carbon nanotube-poly(porphyrin) hybrid for volatile organic compounds detection Journal of Physical Chemistry C. 118: 1602-1610 |
Srinives S, Sarkar T, Mulchandani A. (2014) Primary amine-functionalized polyaniline nanothin film sensor for detecting formaldehyde Sensors and Actuators, B: Chemical. 194: 255-259 |
Sarkar T, Gao Y, Mulchandani A. (2013) Carbon nanotubes-based label-free affinity sensors for environmental monitoring. Applied Biochemistry and Biotechnology. 170: 1011-25 |
Gong JL, Sarkar T, Badhulika S, et al. (2013) Label-free chemiresistive biosensor for mercury (II) based on single-walled carbon nanotubes and structure-switching DNA. Applied Physics Letters. 102: 13701 |
Srinives S, Sarkar T, Mulchandani A. (2013) Nanothin polyaniline film for highly sensitive chemiresistive gas sensing Electroanalysis. 25: 1439-1445 |