Performance analysis of dye sensitized solar cells annealed by microwave processing
Loading...
Date
item.page.authors
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract
In the present work Dye sensitized solar cells (DSSCs), sensitized with natural
newlinecoloring pigments extracted from Argemona Mexicana, Grapes, Beta vulgaris, Piper
newlinebetel leaves Spinach leaves and red Malabar spinach fruit were prepared. These dyes
newlinewere prepared using ethanol as solvent. Different dye extracts were used as sensitizer
newlinefor the photo electrode and incorporated in the DSSCs. UV-Visible spectra were
newlinerecorded for the different natural dyes and the corresponding peak absorbance
newlinewavelength, absorbance, photon energy and absorption coefficient for the dyes were
newlinecalculated. UV-Visible spectra show varying peak absorbance wavelength ranging
newlinefrom 328 to 544 for different dyes used. Functional group present in the dyes were
newlineidentified using FTIR studies as intermolecular hydrogen bond (H-bond)., C-H
newlinestretching bonds, C=C stretching bonds and CO-O-CO stretching bonds. Different
newlineDSSCs were prepared under same processing condition and by using different
newlinenatural dyes. These DSSCs were calcined using conventional heating method. Photoelectrochemical
newlineperformances of these DSSCs were evaluated under a scanning
newlinevoltage +1 V to -1V. The short circuit current (ISC) varies from 7.5 to 2.45 mA, with
newlineopen circuit voltage (VOC) ranging from 0.25 to 0.42 V and efficiency of Beta
newlinevulgaris, Betel leaves, Grapefruit, Spinach leaves and Argemona Mexicana flower
newlineare 1.20,1.22 ,1.46, 1.64 and 1.29 respectively for the 100 mW/cm2 light intensity.
newlineThis reveal DSSCs prepared using dyes extracted from Beetle leaves show least
newlineefficiency and the DSSC prepared using spinach showing increased efficiency.
newlineThe cells were fabricated using TiO2 as semiconducting
newlinelayer deposited on the transparent fluorine doped tin oxide (FTO) conductive glass.
newlineMicrowave processing is used for annealing the TiO2 coated FTO glass, keeping
newlineconstant microwave power and by varying microwave exposure times from 1 to 10