Doped-carbazolocarbazoles as hole transporting materials in small molecule solar cells with different architectures
The adaptation of interfacial layers to the stacked architecture of organic solar cells represents a very useful strategy for improved device operation. In this context, heteroacenic structures such as carbazolocarbazoles have been doped and evaluated as hole transporting materials in small molecule...
Main Authors: | , , , , |
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Format: | Journal article |
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Elsevier
2016
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_version_ | 1797082344634449920 |
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author | Curiel, D Montoya, M Hummert, M Riede, M Leo, K |
author_facet | Curiel, D Montoya, M Hummert, M Riede, M Leo, K |
author_sort | Curiel, D |
collection | OXFORD |
description | The adaptation of interfacial layers to the stacked architecture of organic solar cells represents a very useful strategy for improved device operation. In this context, heteroacenic structures such as carbazolocarbazoles have been doped and evaluated as hole transporting materials in small molecule solar cell with either inverted or conventional architecture. S-kinks in the IV-curve detected for the inverted solar cells could be remarkably corrected by reversing the deposition sequence, highlighting the importance of buffer layer adjustment. Some of the studied carbazolocarbazoles proved to be a suitable molecule to be used as hole transporting materials. |
first_indexed | 2024-03-07T01:26:51Z |
format | Journal article |
id | oxford-uuid:92472df5-1f63-4f94-b077-b9fdcef98d87 |
institution | University of Oxford |
last_indexed | 2024-03-07T01:26:51Z |
publishDate | 2016 |
publisher | Elsevier |
record_format | dspace |
spelling | oxford-uuid:92472df5-1f63-4f94-b077-b9fdcef98d872022-03-26T23:24:17ZDoped-carbazolocarbazoles as hole transporting materials in small molecule solar cells with different architecturesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:92472df5-1f63-4f94-b077-b9fdcef98d87Symplectic Elements at OxfordElsevier2016Curiel, DMontoya, MHummert, MRiede, MLeo, KThe adaptation of interfacial layers to the stacked architecture of organic solar cells represents a very useful strategy for improved device operation. In this context, heteroacenic structures such as carbazolocarbazoles have been doped and evaluated as hole transporting materials in small molecule solar cell with either inverted or conventional architecture. S-kinks in the IV-curve detected for the inverted solar cells could be remarkably corrected by reversing the deposition sequence, highlighting the importance of buffer layer adjustment. Some of the studied carbazolocarbazoles proved to be a suitable molecule to be used as hole transporting materials. |
spellingShingle | Curiel, D Montoya, M Hummert, M Riede, M Leo, K Doped-carbazolocarbazoles as hole transporting materials in small molecule solar cells with different architectures |
title | Doped-carbazolocarbazoles as hole transporting materials in small molecule solar cells with different architectures |
title_full | Doped-carbazolocarbazoles as hole transporting materials in small molecule solar cells with different architectures |
title_fullStr | Doped-carbazolocarbazoles as hole transporting materials in small molecule solar cells with different architectures |
title_full_unstemmed | Doped-carbazolocarbazoles as hole transporting materials in small molecule solar cells with different architectures |
title_short | Doped-carbazolocarbazoles as hole transporting materials in small molecule solar cells with different architectures |
title_sort | doped carbazolocarbazoles as hole transporting materials in small molecule solar cells with different architectures |
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