Ruchi Gakhar
University of Nevada, Reno
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Publication
Featured researches published by Ruchi Gakhar.
Journal of Materials Chemistry | 2014
Ruchi Gakhar; Augustus Merwin; Kodi Summers; Satyananda Kishore Pilli; Dev Chidambaram
This study reports the synthesis of ZnxCd1−xSe quantum dot-sensitized titania nanotube array photoelectrodes using a successive ionic layer adsorption and reaction technique and evaluates the photoelectrochemical performance as anodes. The effect of altering the number of sensitization cycles and annealing temperature on optical and photoelectrochemical properties of prepared photoanodes was studied. Surface morphology of the sensitized tubes was analyzed by scanning electron microscopy, while the phase composition was determined using X-ray diffraction and X-ray photoelectron spectroscopy techniques. Spectral response measurements indicated that TiO2 nanotube arrays coupled with ZnxCd1−xSe quantum dots synthesized in 7 cycles of deposition and annealed at 300 °C for 1 h under N2 exhibited excellent photoelectrochemical properties. The notably high photovoltaic characteristics demonstrate the potential of the ZnxCd1−xSe/TiO2 heterostructure as an efficient photoanode.
RSC Advances | 2014
Ruchi Gakhar; Kodi Summers; Rishubh Palaniappan; Satyananda Kishore Pilli; Dev Chidambaram
The photoanode obtained by the deposition of MnxCdySe nanocrystals onto TiO2 nanotube arrays using a successive ionic layer adsorption and reaction technique realized a significant improvement in the charge transport and current generation compared with a pristine TiO2 nanotube based anode. The concentration of manganese was determined to be 10% of the concentration of cadmium, and thus x = 0.1y. The widening of absorption spectra and the magnitude of photocurrent density were found to be significantly affected with a variation in the number of SILAR cycles and the annealing temperature. A stable photocurrent density of ∼8 mA cm−2 under AM 1.5 illumination (1 sun) was achieved for MnxCdySe nanocrystals-embedded TiO2 nanotube arrays heterostructure based photoelectrodes prepared through 9 cycles of SILAR deposition, followed by annealing at 400 °C under a nitrogen atmosphere. The results obtained suggest the versatility of the MnxCdySe-sensitized TiO2 nanotube matrix as an efficient electrode for photovoltaic applications.
Applied Surface Science | 2015
Ruchi Gakhar; York R. Smith; Mano Misra; Dev Chidambaram
Journal of The Electrochemical Society | 2015
Kalyan Chitrada; Krishnan S. Raja; Ruchi Gakhar; Dev Chidambaram
Electrochimica Acta | 2014
York R. Smith; Ruchi Gakhar; Augustus Merwin; Swomitra K. Mohanty; Dev Chidambaram; Mano Misra
Solar Energy Materials and Solar Cells | 2016
Ruchi Gakhar; Dev Chidambaram
Journal of The Electrochemical Society | 2016
Kalyan Chitrada; Ruchi Gakhar; Dev Chidambaram; Eric Aston; Krishnan S. Raja
224th ECS Meeting (October 27 – November 1, 2013) | 2014
Ruchi Gakhar; Dev Chidambaram
229th ECS Meeting (May 29 - June 2, 2016) | 2016
Mackenzie Parker; Ruchi Gakhar; Dev Chidambaram
229th ECS Meeting (May 29 - June 2, 2016) | 2016
Mary Lou Lindstrom; Ruchi Gakhar; Dev Chidambaram