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Teena Gakhar
Teena Gakhar
Research Scholar BITS Pilani
Verified email at pilani.bits-pilani.ac.in
Title
Cited by
Cited by
Year
Oxygen vacancy modulation of titania nanotubes by cathodic polarization and chemical reduction routes for efficient detection of volatile organic compounds
T Gakhar, A Hazra
Nanoscale 12 (16), 9082-9093, 2020
542020
p-TiO2/GO heterojunction based VOC sensors: A new approach to amplify sensitivity in FET structure at optimized gate voltage
T Gakhar, A Hazra
Measurement 182, 109721, 2021
182021
Carbon-metal oxide nanocomposites for selective detection of toxic and hazardous volatile organic compounds (VOC)–A review
T Gakhar, S Basu, A Hazra
Green Analytical Chemistry 1, 100005, 2022
172022
C60-encapsulated TiO2 nanoparticles for selective and ultrahigh sensitive detection of formaldehyde
T Gakhar, A Hazra
Nanotechnology 32 (50), 505505, 2021
132021
Fullerene (C60) functionalized TiO2 nanotubes for conductometric sensing of formaldehyde
T Gakhar, Y Rosenwaks, A Hazra
Sensors and Actuators B: Chemical 364, 131892, 2022
112022
Synthesis of GO Loaded TiO2 Nanotubes Array by Anodic Oxidation for Efficient Detection of Organic Vapor
T Gakhar, A Hazra
Journal of Electronic Materials 48 (8), 5342-5347, 2019
92019
GO/p-TiO2 hybrid channel based depletion-mode field-effect transistors with On/Off ratio higher than 103 at room temperature
A Hazra, T Gakhar
Journal of Materials Science: Materials in Electronics 34 (26), 1832, 2023
2023
Development of Graphene-Doped TiO2-Nanotube Array-Based MIM-Structured Sensors and Its Application for Methanol Sensing at Room Temperature
T Gakhar, A Hazra
Chemistry Proceedings 5 (1), 74, 2021
2021
Carbon-TiO2 Nanocomposites based Devices for Detection of Volatile Organic Compounds
T Gakhar
BIRLA INSTITUTE OF TECHNOLOGY AND SCIENCE, PILANI, 2021
2021
TiO2-GO Field Effect Transistors for Amplified Ethanol Sensing
T Gakhar, A Hazra
2020 IEEE International IOT, Electronics and Mechatronics Conference …, 2020
2020
Fullerene (C 60) Functionalized TiO 2 Nanotubes for Enhanced Sensing of Formaldehyde
T Gakhar, Y Rosenwaks, A HAZRA
Available at SSRN 4009445, 0
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