Performance of dye-sensitized solar cells with mixed three natural pigments and reduced graphene oxide as a counter electrode

This work overviews the effect of combining three natural dyes as a photosensitizer for dye-sensitized solar cells (DSSC). Reduced graphene oxide in this work was used as a Pt-free counter electrode. The dyes consist of curcuminoid (Curcuma longa), chlorophyll (Justicia gendarussa), and anthocyanins...

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出版年:Results in Optics
主要な著者: Eka Cahya Prima, Prima Fitri Rusliani, Endi Suhendi, Brian Yuliarto
フォーマット: 論文
言語:英語
出版事項: Elsevier 2024-02-01
主題:
オンライン・アクセス:http://www.sciencedirect.com/science/article/pii/S2666950123002444
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author Eka Cahya Prima
Prima Fitri Rusliani
Endi Suhendi
Brian Yuliarto
author_facet Eka Cahya Prima
Prima Fitri Rusliani
Endi Suhendi
Brian Yuliarto
author_sort Eka Cahya Prima
collection DOAJ
container_title Results in Optics
description This work overviews the effect of combining three natural dyes as a photosensitizer for dye-sensitized solar cells (DSSC). Reduced graphene oxide in this work was used as a Pt-free counter electrode. The dyes consist of curcuminoid (Curcuma longa), chlorophyll (Justicia gendarussa), and anthocyanins (Clitoria ternatea). The effect of absorbance spectrum, Light Harvesting Efficiency (LHE), bandgap energy, and performance of DSSC were also studied. From the result, combination dyes have a broader absorbance spectrum and LHE than a single dyes solution, while the redox potential of the dye produces a similar gap energy (HOMO/LUMO) due to the solvent used to extract the dye, which is around 1.76–1.79 eV. The best result was achieved by a combination of three dyes, Yellow-Green-Blue, which has a short-circuit current density (Jsc) of 6.50 mA/cm2, an open-circuit voltage (Voc) of 0.94 V, a fill factor of 31.2 %, and efficiency of 1.91 %. The performance of the DSSC is not only due to a large amount of photon energy absorbed and adsorbed on the TiO2 surface and the fast electron diffusion rate due to the large LHE and narrow gap energy. Therefore, combining natural dye and using rGO as the counter electrode can improve the performance of DSSC optimally.
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spelling doaj-art-d000dad4e9d34e5cb9aefdaa2d4caba12025-08-20T00:50:39ZengElsevierResults in Optics2666-95012024-02-011410059210.1016/j.rio.2023.100592Performance of dye-sensitized solar cells with mixed three natural pigments and reduced graphene oxide as a counter electrodeEka Cahya Prima0Prima Fitri Rusliani1Endi Suhendi2Brian Yuliarto3Materials Physics Laboratory, Department of Physics Education, Faculty of Mathematics and Science Education, Universitas Pendidikan Indonesia, Bandung 40154, Indonesia; Corresponding authors.Solar Energy Materials Laboratory, Department of Science Education, Faculty of Mathematics and Science Education, Universitas Pendidikan Indonesia, Bandung 40154, Indonesia; Materials Physics Laboratory, Department of Physics Education, Faculty of Mathematics and Science Education, Universitas Pendidikan Indonesia, Bandung 40154, IndonesiaMaterials Physics Laboratory, Department of Physics Education, Faculty of Mathematics and Science Education, Universitas Pendidikan Indonesia, Bandung 40154, Indonesia; Corresponding authors.Advanced Functional Materials Laboratory, Department of Engineering Physics, Faculty of Industrial Engineering, Institut Teknologi Bandung, Bandung 40132, IndonesiaThis work overviews the effect of combining three natural dyes as a photosensitizer for dye-sensitized solar cells (DSSC). Reduced graphene oxide in this work was used as a Pt-free counter electrode. The dyes consist of curcuminoid (Curcuma longa), chlorophyll (Justicia gendarussa), and anthocyanins (Clitoria ternatea). The effect of absorbance spectrum, Light Harvesting Efficiency (LHE), bandgap energy, and performance of DSSC were also studied. From the result, combination dyes have a broader absorbance spectrum and LHE than a single dyes solution, while the redox potential of the dye produces a similar gap energy (HOMO/LUMO) due to the solvent used to extract the dye, which is around 1.76–1.79 eV. The best result was achieved by a combination of three dyes, Yellow-Green-Blue, which has a short-circuit current density (Jsc) of 6.50 mA/cm2, an open-circuit voltage (Voc) of 0.94 V, a fill factor of 31.2 %, and efficiency of 1.91 %. The performance of the DSSC is not only due to a large amount of photon energy absorbed and adsorbed on the TiO2 surface and the fast electron diffusion rate due to the large LHE and narrow gap energy. Therefore, combining natural dye and using rGO as the counter electrode can improve the performance of DSSC optimally.http://www.sciencedirect.com/science/article/pii/S2666950123002444Dye-sensitized solar cellDye combinationPhotosensitizerrGO
spellingShingle Eka Cahya Prima
Prima Fitri Rusliani
Endi Suhendi
Brian Yuliarto
Performance of dye-sensitized solar cells with mixed three natural pigments and reduced graphene oxide as a counter electrode
Dye-sensitized solar cell
Dye combination
Photosensitizer
rGO
title Performance of dye-sensitized solar cells with mixed three natural pigments and reduced graphene oxide as a counter electrode
title_full Performance of dye-sensitized solar cells with mixed three natural pigments and reduced graphene oxide as a counter electrode
title_fullStr Performance of dye-sensitized solar cells with mixed three natural pigments and reduced graphene oxide as a counter electrode
title_full_unstemmed Performance of dye-sensitized solar cells with mixed three natural pigments and reduced graphene oxide as a counter electrode
title_short Performance of dye-sensitized solar cells with mixed three natural pigments and reduced graphene oxide as a counter electrode
title_sort performance of dye sensitized solar cells with mixed three natural pigments and reduced graphene oxide as a counter electrode
topic Dye-sensitized solar cell
Dye combination
Photosensitizer
rGO
url http://www.sciencedirect.com/science/article/pii/S2666950123002444
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