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Synthesis and application of amine-containing conjugated small molecules for the automatic formation of an electron transporting layer via spontaneous phase separation from the bulk-heterojunction layer

Carbazole-based conjugated small molecule electrolytes (CSEs) containing different numbers of amine groups were synthesized and applied to bulk-heterojunction (BHJ) organic solar cells for the formation of a spontaneous self-assembled electron transporting layer (ETL). The active layer was spin-coat...

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Autores principales: Kim, Juae, Kim, Yong Ryun, Kim, Minji, Jin, Jong Sung, Sung, Ji Yeong, Back, Hyungcheol, Kim, Heejoo, Lee, Kwanghee, Suh, Hongsuk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9072745/
https://www.ncbi.nlm.nih.gov/pubmed/35530776
http://dx.doi.org/10.1039/c9ra06293a
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author Kim, Juae
Kim, Yong Ryun
Kim, Minji
Jin, Jong Sung
Sung, Ji Yeong
Back, Hyungcheol
Kim, Heejoo
Lee, Kwanghee
Suh, Hongsuk
author_facet Kim, Juae
Kim, Yong Ryun
Kim, Minji
Jin, Jong Sung
Sung, Ji Yeong
Back, Hyungcheol
Kim, Heejoo
Lee, Kwanghee
Suh, Hongsuk
author_sort Kim, Juae
collection PubMed
description Carbazole-based conjugated small molecule electrolytes (CSEs) containing different numbers of amine groups were synthesized and applied to bulk-heterojunction (BHJ) organic solar cells for the formation of a spontaneous self-assembled electron transporting layer (ETL). The active layer was spin-coated with a mixture solution containing the BHJ materials and a small amount of CSE, and a thin layer of CSE was formed underneath the active layer (CSE/BHJ bi-layer) via spontaneous phase separation, which is confirmed by the depth profile of the time of flight secondary ion mass spectroscopy (ToF-SIMS) spectrum. The amino groups in the CSEs form hydrogen-bonds with the surface of indium tin oxide (ITO), which acts as an ETL in BHJ solar cells. Moreover, the formed CSE layer is capable of changing the effective work function (WF) of ITO. An increasing number of amino groups in the CSEs (from Cz1N to Cz3N) provides more reduction of the effective WF of ITO, which results in a lower internal resistance and a higher power conversion efficiency (PCE). Furthermore, the enhanced hydrogen bonding between the amines and ITO with an increased number of amine groups has been studied by XPS. This result suggests that one-step processing provides a reduction of the manufacturing cost, which can provide an attractive design concept for ETL fabrication.
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spelling pubmed-90727452022-05-06 Synthesis and application of amine-containing conjugated small molecules for the automatic formation of an electron transporting layer via spontaneous phase separation from the bulk-heterojunction layer Kim, Juae Kim, Yong Ryun Kim, Minji Jin, Jong Sung Sung, Ji Yeong Back, Hyungcheol Kim, Heejoo Lee, Kwanghee Suh, Hongsuk RSC Adv Chemistry Carbazole-based conjugated small molecule electrolytes (CSEs) containing different numbers of amine groups were synthesized and applied to bulk-heterojunction (BHJ) organic solar cells for the formation of a spontaneous self-assembled electron transporting layer (ETL). The active layer was spin-coated with a mixture solution containing the BHJ materials and a small amount of CSE, and a thin layer of CSE was formed underneath the active layer (CSE/BHJ bi-layer) via spontaneous phase separation, which is confirmed by the depth profile of the time of flight secondary ion mass spectroscopy (ToF-SIMS) spectrum. The amino groups in the CSEs form hydrogen-bonds with the surface of indium tin oxide (ITO), which acts as an ETL in BHJ solar cells. Moreover, the formed CSE layer is capable of changing the effective work function (WF) of ITO. An increasing number of amino groups in the CSEs (from Cz1N to Cz3N) provides more reduction of the effective WF of ITO, which results in a lower internal resistance and a higher power conversion efficiency (PCE). Furthermore, the enhanced hydrogen bonding between the amines and ITO with an increased number of amine groups has been studied by XPS. This result suggests that one-step processing provides a reduction of the manufacturing cost, which can provide an attractive design concept for ETL fabrication. The Royal Society of Chemistry 2019-10-09 /pmc/articles/PMC9072745/ /pubmed/35530776 http://dx.doi.org/10.1039/c9ra06293a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Kim, Juae
Kim, Yong Ryun
Kim, Minji
Jin, Jong Sung
Sung, Ji Yeong
Back, Hyungcheol
Kim, Heejoo
Lee, Kwanghee
Suh, Hongsuk
Synthesis and application of amine-containing conjugated small molecules for the automatic formation of an electron transporting layer via spontaneous phase separation from the bulk-heterojunction layer
title Synthesis and application of amine-containing conjugated small molecules for the automatic formation of an electron transporting layer via spontaneous phase separation from the bulk-heterojunction layer
title_full Synthesis and application of amine-containing conjugated small molecules for the automatic formation of an electron transporting layer via spontaneous phase separation from the bulk-heterojunction layer
title_fullStr Synthesis and application of amine-containing conjugated small molecules for the automatic formation of an electron transporting layer via spontaneous phase separation from the bulk-heterojunction layer
title_full_unstemmed Synthesis and application of amine-containing conjugated small molecules for the automatic formation of an electron transporting layer via spontaneous phase separation from the bulk-heterojunction layer
title_short Synthesis and application of amine-containing conjugated small molecules for the automatic formation of an electron transporting layer via spontaneous phase separation from the bulk-heterojunction layer
title_sort synthesis and application of amine-containing conjugated small molecules for the automatic formation of an electron transporting layer via spontaneous phase separation from the bulk-heterojunction layer
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9072745/
https://www.ncbi.nlm.nih.gov/pubmed/35530776
http://dx.doi.org/10.1039/c9ra06293a
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