Basant Chitara
Indian Institute of Science
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Publication
Featured researches published by Basant Chitara.
Advanced Materials | 2011
Basant Chitara; L. S. Panchakarla; S. B. Krupanidhi; C. N. R. Rao
The use of reduced graphene oxide (RGO) and graphene nanoribbons (GNRs) as infrared photodetectors is explored, based on recent results dealing with solar cells, light-emitting devices, photodetectors, and ultrafast lasers. IR detection is demonstrated by both RGO and GNRs in terms of the time-resolved photocurrent and photoresponse. The responsivity of the detectors and their functioning are presented.
Applied Physics Letters | 2011
Basant Chitara; S. B. Krupanidhi; C. N. R. Rao
Electronic properties of graphene have been studied more extensively than its photonic applications, in spite of its exciting optical properties. Recent results on solar cells, light emitting diodes and photodetectors show its true potential in photonics and optoelectronics. Here, we have explored the use of reduced graphene oxide as a candidate for solution processed ultraviolet photodetectors. UV detection is demonstrated by reduced graphene oxide in terms of time resolved photocurrent as well as photoresponse. The responsivity of the detectors is found to be 0.12 A/W with an external quantum efficiency of 40%
Nanotechnology | 2009
Basant Chitara; D. S. Ivan Jebakumar; C. N. R. Rao; S. B. Krupanidhi
Negative differential resistance (NDR) has been observed for the first time above room temperature in gallium nitride nanocrystals synthesized by a simple chemical route. Current-voltage characteristics have been used to investigate this effect through a metal-semiconductor-metal (M-S-M) configuration on SiO2. The NDR effect is reversible and reproducible through many cycles. The threshold voltage is approximately 7 V above room temperature.
Japanese Journal of Applied Physics | 2011
Basant Chitara; L. S. Panchakarla; Salaru Baba Krupanidhi; C. N. R. Rao
UV photodetectors based on ZnO nanorods prepared by two methods have been fabricated by a simple drop casting procedure. The detectors show good performance at 375 nm giving satisfactory values of responsivity, external quantum efficiency and photoconductive gain. The performance of ZnO nanorods prepared at low temperatures, containing a larger concentration of defects, is found to be superior.
Nanotechnology | 2017
Basant Chitara; Assaf Ya’akobovitz
Gallium telluride (GaTe) is a layered material, which exhibits a direct bandgap (∼1.65 eV) regardless of its thickness and therefore holds great potential for integration as a core element in stretchable optomechanical and optoelectronic devices. Here, we characterize and demonstrate the elastic properties and electromechanical resonators of suspended thin GaTe nanodrums. We used atomic force microscopy to extract the Youngs modulus of GaTe (average value ∼39 GPa) and to predict the resonance frequencies of suspended GaTe nanodrums of various geometries. Electromechanical resonators fabricated from suspended GaTe revealed fundamental resonance frequencies in the range of 10-25 MHz, which closely match predicted values. Therefore, this study paves the way for creating a new generation of GaTe based nanoelectromechanical devices with a direct bandgap vibrating element, which can serve as optomechanical sensors and actuators.
Macromolecular Chemistry and Physics | 2012
Prashant Kumar; Barun Das; Basant Chitara; K. S. Subrahmanyam; K. Gopalakrishnan; S. B. Krupanidhi; C. N. R. Rao
Solid State Communications | 2010
Basant Chitara; Dattatray J. Late; S. B. Krupanidhi; C. N. R. Rao
Solid State Communications | 2008
Basant Chitara; S. Venkataprasad Bhat; S. R. C. Vivekchand; A. Gomathi; C. N. R. Rao
Journal of Luminescence | 2011
Basant Chitara; Nidhi Lal; S. B. Krupanidhi; C. N. R. Rao
Journal of Nanoscience and Nanotechnology | 2017
D. S. Ivan Jebakumar; Basant Chitara; S. B. Krupanidhi
Collaboration
Dive into the Basant Chitara's collaboration.
Jawaharlal Nehru Centre for Advanced Scientific Research
View shared research outputsJawaharlal Nehru Centre for Advanced Scientific Research
View shared research outputsJawaharlal Nehru Centre for Advanced Scientific Research
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