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Ligand-free preparation of polymer/CuInS(2) nanocrystal films and the influence of 1,3-benzenedithiol on their photovoltaic performance and charge recombination properties

Bulk heterojunction solar cells based on conjugated polymer donors and fullerene-derivative acceptors have received much attention in the last decade. Alternative acceptors like organic non-fullerene acceptors or inorganic nanocrystals have been investigated to a lesser extent; however, they also sh...

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Autores principales: Rath, Thomas, Scheunemann, Dorothea, Canteri, Roberto, Amenitsch, Heinz, Handl, Jasmin, Wewerka, Karin, Kothleitner, Gerald, Leimgruber, Simon, Knall, Astrid-Caroline, Haque, Saif A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6350655/
https://www.ncbi.nlm.nih.gov/pubmed/30774956
http://dx.doi.org/10.1039/c8tc05103h
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author Rath, Thomas
Scheunemann, Dorothea
Canteri, Roberto
Amenitsch, Heinz
Handl, Jasmin
Wewerka, Karin
Kothleitner, Gerald
Leimgruber, Simon
Knall, Astrid-Caroline
Haque, Saif A.
author_facet Rath, Thomas
Scheunemann, Dorothea
Canteri, Roberto
Amenitsch, Heinz
Handl, Jasmin
Wewerka, Karin
Kothleitner, Gerald
Leimgruber, Simon
Knall, Astrid-Caroline
Haque, Saif A.
author_sort Rath, Thomas
collection PubMed
description Bulk heterojunction solar cells based on conjugated polymer donors and fullerene-derivative acceptors have received much attention in the last decade. Alternative acceptors like organic non-fullerene acceptors or inorganic nanocrystals have been investigated to a lesser extent; however, they also show great potential. In this study, one focus is set on the investigation of the in situ growth of copper indium sulfide nanocrystals in a conjugated polymer matrix. This preparation method allows the fabrication of a hybrid active layer without long-chain ligands, which could hinder charge separation and transport. In contrast, surfactants for the passivation of the nanocrystal surface are missing. To tackle this problem, we modified the absorber layer with 1,3-benzenedithiol and investigated the influence on charge transfer and solar cell performance. Using ToF-SIMS measurements, we could show that 1,3-benzenedithiol is successfully incorporated and homogeneously distributed in the absorber layer, which significantly increases the power conversion efficiency of the corresponding solar cells. This can be correlated to an improved charge transfer between the nanocrystals and the conjugated polymer as revealed by transient absorption spectroscopy as well as prolonged carrier lifetimes as disclosed by transient photovoltage measurements.
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spelling pubmed-63506552019-02-15 Ligand-free preparation of polymer/CuInS(2) nanocrystal films and the influence of 1,3-benzenedithiol on their photovoltaic performance and charge recombination properties Rath, Thomas Scheunemann, Dorothea Canteri, Roberto Amenitsch, Heinz Handl, Jasmin Wewerka, Karin Kothleitner, Gerald Leimgruber, Simon Knall, Astrid-Caroline Haque, Saif A. J Mater Chem C Mater Chemistry Bulk heterojunction solar cells based on conjugated polymer donors and fullerene-derivative acceptors have received much attention in the last decade. Alternative acceptors like organic non-fullerene acceptors or inorganic nanocrystals have been investigated to a lesser extent; however, they also show great potential. In this study, one focus is set on the investigation of the in situ growth of copper indium sulfide nanocrystals in a conjugated polymer matrix. This preparation method allows the fabrication of a hybrid active layer without long-chain ligands, which could hinder charge separation and transport. In contrast, surfactants for the passivation of the nanocrystal surface are missing. To tackle this problem, we modified the absorber layer with 1,3-benzenedithiol and investigated the influence on charge transfer and solar cell performance. Using ToF-SIMS measurements, we could show that 1,3-benzenedithiol is successfully incorporated and homogeneously distributed in the absorber layer, which significantly increases the power conversion efficiency of the corresponding solar cells. This can be correlated to an improved charge transfer between the nanocrystals and the conjugated polymer as revealed by transient absorption spectroscopy as well as prolonged carrier lifetimes as disclosed by transient photovoltage measurements. Royal Society of Chemistry 2019-01-28 2018-12-18 /pmc/articles/PMC6350655/ /pubmed/30774956 http://dx.doi.org/10.1039/c8tc05103h Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Rath, Thomas
Scheunemann, Dorothea
Canteri, Roberto
Amenitsch, Heinz
Handl, Jasmin
Wewerka, Karin
Kothleitner, Gerald
Leimgruber, Simon
Knall, Astrid-Caroline
Haque, Saif A.
Ligand-free preparation of polymer/CuInS(2) nanocrystal films and the influence of 1,3-benzenedithiol on their photovoltaic performance and charge recombination properties
title Ligand-free preparation of polymer/CuInS(2) nanocrystal films and the influence of 1,3-benzenedithiol on their photovoltaic performance and charge recombination properties
title_full Ligand-free preparation of polymer/CuInS(2) nanocrystal films and the influence of 1,3-benzenedithiol on their photovoltaic performance and charge recombination properties
title_fullStr Ligand-free preparation of polymer/CuInS(2) nanocrystal films and the influence of 1,3-benzenedithiol on their photovoltaic performance and charge recombination properties
title_full_unstemmed Ligand-free preparation of polymer/CuInS(2) nanocrystal films and the influence of 1,3-benzenedithiol on their photovoltaic performance and charge recombination properties
title_short Ligand-free preparation of polymer/CuInS(2) nanocrystal films and the influence of 1,3-benzenedithiol on their photovoltaic performance and charge recombination properties
title_sort ligand-free preparation of polymer/cuins(2) nanocrystal films and the influence of 1,3-benzenedithiol on their photovoltaic performance and charge recombination properties
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6350655/
https://www.ncbi.nlm.nih.gov/pubmed/30774956
http://dx.doi.org/10.1039/c8tc05103h
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