Improved Performance of Dye-Sensitized Solar Cells With TiO2 Nano-Particles by Using The Carrot as a Dye Solar Cell Application

The aims of the research to were know performance of Dye-Sensitized Solar Cell (DSSC) using the dye of carrots (Daucus carota) as a photosensitizer with a variation of dye deposition area with spin coating techniques. The structure of the samples as a sandwich  consisting of the working electrode ti...

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Main Authors: Hardani Hardani, Lily Maysari Angraeni, Cari Cari, Agus Supriyanto
Format: Article
Language:English
Published: Lambung Mangkurat University Press 2019-05-01
Series:Jurnal Fisika Flux
Subjects:
Online Access:https://ppjp.ulm.ac.id/journal/index.php/f/article/view/5563
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author Hardani Hardani
Lily Maysari Angraeni
Cari Cari
Agus Supriyanto
author_facet Hardani Hardani
Lily Maysari Angraeni
Cari Cari
Agus Supriyanto
author_sort Hardani Hardani
collection DOAJ
description The aims of the research to were know performance of Dye-Sensitized Solar Cell (DSSC) using the dye of carrots (Daucus carota) as a photosensitizer with a variation of dye deposition area with spin coating techniques. The structure of the samples as a sandwich  consisting of the working electrode titanium dioxide (TiO2), dye, electrodes of platinum (Pt) and the electrolyte sandwiched between two electrodes. Test absorbance dye using UV-Visible Spectrophotometer Lambda 25, using a two-point conductivity test probes El Kahfi 100 and characterization test IV using a Keithley 2602A.. DSSC fabrication has been done using dye extract of carrots (Daucus carota) with a variety of solvent technique spin coating. The results show that dye extract of carrots (Daucus carota) have an absorbance spectrum of 380-520 nm range. From the results of the test using AM Simulator 1.5G (100 mW/ cm2) diesel simulator, it was found that the volume of TiO2 precursors affected the performance of DSSC solar cells and the overall conversion efficiency was 0.021% for the carrots (Daucus carota) dye with ethanol solvent and 0.037% for the carrots (Daucus carota) dye by solvent acetone.
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spelling doaj.art-97f8bb65a291439ea5ed253b417300d32022-12-21T18:45:20ZengLambung Mangkurat University PressJurnal Fisika Flux1829-796X2541-17132019-05-01161616810.20527/flux.v16i1.55635155Improved Performance of Dye-Sensitized Solar Cells With TiO2 Nano-Particles by Using The Carrot as a Dye Solar Cell ApplicationHardani Hardani0Lily Maysari Angraeni1Cari Cari2Agus Supriyanto3Politeknik Medica Farma Husada MataramPhysics Department Faculty of Mathematics and Science, Mataram UniversityPhysics Department Faculty of Mathematics and Science, Sebelas Maret University, St. Ir. Sutami 36A Kentingan Surakarta 57126, IndonesiaPhysics Department Faculty of Mathematics and Science, Sebelas Maret University, St. Ir. Sutami 36A Kentingan Surakarta 57126, IndonesiaThe aims of the research to were know performance of Dye-Sensitized Solar Cell (DSSC) using the dye of carrots (Daucus carota) as a photosensitizer with a variation of dye deposition area with spin coating techniques. The structure of the samples as a sandwich  consisting of the working electrode titanium dioxide (TiO2), dye, electrodes of platinum (Pt) and the electrolyte sandwiched between two electrodes. Test absorbance dye using UV-Visible Spectrophotometer Lambda 25, using a two-point conductivity test probes El Kahfi 100 and characterization test IV using a Keithley 2602A.. DSSC fabrication has been done using dye extract of carrots (Daucus carota) with a variety of solvent technique spin coating. The results show that dye extract of carrots (Daucus carota) have an absorbance spectrum of 380-520 nm range. From the results of the test using AM Simulator 1.5G (100 mW/ cm2) diesel simulator, it was found that the volume of TiO2 precursors affected the performance of DSSC solar cells and the overall conversion efficiency was 0.021% for the carrots (Daucus carota) dye with ethanol solvent and 0.037% for the carrots (Daucus carota) dye by solvent acetone.https://ppjp.ulm.ac.id/journal/index.php/f/article/view/5563carrot, counter electrode, dssc, absorbance, conductivity
spellingShingle Hardani Hardani
Lily Maysari Angraeni
Cari Cari
Agus Supriyanto
Improved Performance of Dye-Sensitized Solar Cells With TiO2 Nano-Particles by Using The Carrot as a Dye Solar Cell Application
Jurnal Fisika Flux
carrot, counter electrode, dssc, absorbance, conductivity
title Improved Performance of Dye-Sensitized Solar Cells With TiO2 Nano-Particles by Using The Carrot as a Dye Solar Cell Application
title_full Improved Performance of Dye-Sensitized Solar Cells With TiO2 Nano-Particles by Using The Carrot as a Dye Solar Cell Application
title_fullStr Improved Performance of Dye-Sensitized Solar Cells With TiO2 Nano-Particles by Using The Carrot as a Dye Solar Cell Application
title_full_unstemmed Improved Performance of Dye-Sensitized Solar Cells With TiO2 Nano-Particles by Using The Carrot as a Dye Solar Cell Application
title_short Improved Performance of Dye-Sensitized Solar Cells With TiO2 Nano-Particles by Using The Carrot as a Dye Solar Cell Application
title_sort improved performance of dye sensitized solar cells with tio2 nano particles by using the carrot as a dye solar cell application
topic carrot, counter electrode, dssc, absorbance, conductivity
url https://ppjp.ulm.ac.id/journal/index.php/f/article/view/5563
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AT caricari improvedperformanceofdyesensitizedsolarcellswithtio2nanoparticlesbyusingthecarrotasadyesolarcellapplication
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