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Enhancement of organic solar cell performance by incorporating gold quantum dots (AuQDs) on a plasmonic grating

The incorporation of metallic nanoobjects into devices allows to increase light harvesting, which increases the device performance. In this study, we used a combination of gold quantum dots and grating-coupled surface plasmon resonance (GCSPR) to improve the performance of organic solar cells (OSCs)...

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Autores principales: Phetsang, Sopit, Nootchanat, Supeera, Lertvachirapaiboon, Chutiparn, Ishikawa, Ryousuke, Shinbo, Kazunari, Kato, Keizo, Mungkornasawakul, Pitchaya, Ounnunkad, Kontad, Baba, Akira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419240/
https://www.ncbi.nlm.nih.gov/pubmed/36132386
http://dx.doi.org/10.1039/d0na00169d
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author Phetsang, Sopit
Nootchanat, Supeera
Lertvachirapaiboon, Chutiparn
Ishikawa, Ryousuke
Shinbo, Kazunari
Kato, Keizo
Mungkornasawakul, Pitchaya
Ounnunkad, Kontad
Baba, Akira
author_facet Phetsang, Sopit
Nootchanat, Supeera
Lertvachirapaiboon, Chutiparn
Ishikawa, Ryousuke
Shinbo, Kazunari
Kato, Keizo
Mungkornasawakul, Pitchaya
Ounnunkad, Kontad
Baba, Akira
author_sort Phetsang, Sopit
collection PubMed
description The incorporation of metallic nanoobjects into devices allows to increase light harvesting, which increases the device performance. In this study, we used a combination of gold quantum dots and grating-coupled surface plasmon resonance (GCSPR) to improve the performance of organic solar cells (OSCs) with a poly(3-hexylthiophene-2,5-diyl) (P3HT):[6,6]-phenyl C(61) butyric acid methyl ester (PCBM) photoactive layer. Gold quantum dots with a green fluorescent color (green-AuQD) were loaded into a hole transport layer (HTL) aiming to harvest photons in the UV region and emit visible light into the neighboring photoactive layer. Meanwhile, plasmonic grating structures, which were created on the photoactive layer surfaces via the nanoimprinting technique, provided an enhancement effect through light scattering and GCSPR. Thus, an excellent enhancement of OSC efficiency with a significant increase in short circuit photocurrent (J(SC)) and power conversion efficiency (PCE) in comparison to that of the reference cell was achieved. The fabricated device provides a J(SC) value as high as 8.41 mA cm(−2) (a 14.11% enhancement) and a PCE value of 3.91% (a 19.57% enhancement). The systematic study clearly reveals that the remarkable enhancement of OSC efficiency is achieved by incorporating both AuQD and plasmonic grating.
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spelling pubmed-94192402022-09-20 Enhancement of organic solar cell performance by incorporating gold quantum dots (AuQDs) on a plasmonic grating Phetsang, Sopit Nootchanat, Supeera Lertvachirapaiboon, Chutiparn Ishikawa, Ryousuke Shinbo, Kazunari Kato, Keizo Mungkornasawakul, Pitchaya Ounnunkad, Kontad Baba, Akira Nanoscale Adv Chemistry The incorporation of metallic nanoobjects into devices allows to increase light harvesting, which increases the device performance. In this study, we used a combination of gold quantum dots and grating-coupled surface plasmon resonance (GCSPR) to improve the performance of organic solar cells (OSCs) with a poly(3-hexylthiophene-2,5-diyl) (P3HT):[6,6]-phenyl C(61) butyric acid methyl ester (PCBM) photoactive layer. Gold quantum dots with a green fluorescent color (green-AuQD) were loaded into a hole transport layer (HTL) aiming to harvest photons in the UV region and emit visible light into the neighboring photoactive layer. Meanwhile, plasmonic grating structures, which were created on the photoactive layer surfaces via the nanoimprinting technique, provided an enhancement effect through light scattering and GCSPR. Thus, an excellent enhancement of OSC efficiency with a significant increase in short circuit photocurrent (J(SC)) and power conversion efficiency (PCE) in comparison to that of the reference cell was achieved. The fabricated device provides a J(SC) value as high as 8.41 mA cm(−2) (a 14.11% enhancement) and a PCE value of 3.91% (a 19.57% enhancement). The systematic study clearly reveals that the remarkable enhancement of OSC efficiency is achieved by incorporating both AuQD and plasmonic grating. RSC 2020-06-08 /pmc/articles/PMC9419240/ /pubmed/36132386 http://dx.doi.org/10.1039/d0na00169d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Phetsang, Sopit
Nootchanat, Supeera
Lertvachirapaiboon, Chutiparn
Ishikawa, Ryousuke
Shinbo, Kazunari
Kato, Keizo
Mungkornasawakul, Pitchaya
Ounnunkad, Kontad
Baba, Akira
Enhancement of organic solar cell performance by incorporating gold quantum dots (AuQDs) on a plasmonic grating
title Enhancement of organic solar cell performance by incorporating gold quantum dots (AuQDs) on a plasmonic grating
title_full Enhancement of organic solar cell performance by incorporating gold quantum dots (AuQDs) on a plasmonic grating
title_fullStr Enhancement of organic solar cell performance by incorporating gold quantum dots (AuQDs) on a plasmonic grating
title_full_unstemmed Enhancement of organic solar cell performance by incorporating gold quantum dots (AuQDs) on a plasmonic grating
title_short Enhancement of organic solar cell performance by incorporating gold quantum dots (AuQDs) on a plasmonic grating
title_sort enhancement of organic solar cell performance by incorporating gold quantum dots (auqds) on a plasmonic grating
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419240/
https://www.ncbi.nlm.nih.gov/pubmed/36132386
http://dx.doi.org/10.1039/d0na00169d
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