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Photon-upconverters for blue organic light-emitting diodes: a low-cost, sky-blue example
In the research ecosystem's quest towards having deployable organic light-emitting diodes with higher-energy emission (e.g., blue light), we advocate focusing on fluorescent emitters, due to their relative stability and colour purity, and developing design strategies to significantly improve th...
Autores principales: | , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
RSC
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8886671/ https://www.ncbi.nlm.nih.gov/pubmed/35342862 http://dx.doi.org/10.1039/d1na00803j |
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author | Yang, Le Chua, Xian Wei Yang, Zhihong Ding, Xiangpeng Yu, Yong Suwardi, Ady Zhao, Meng Ke, Karen Lin Ehrler, Bruno Di, Dawei |
author_facet | Yang, Le Chua, Xian Wei Yang, Zhihong Ding, Xiangpeng Yu, Yong Suwardi, Ady Zhao, Meng Ke, Karen Lin Ehrler, Bruno Di, Dawei |
author_sort | Yang, Le |
collection | PubMed |
description | In the research ecosystem's quest towards having deployable organic light-emitting diodes with higher-energy emission (e.g., blue light), we advocate focusing on fluorescent emitters, due to their relative stability and colour purity, and developing design strategies to significantly improve their efficiencies. We propose that all triplet–triplet annihilation upconversion (TTA-UC) emitters would make good candidates for triplet fusion-enhanced OLEDs (“FuLEDs”), due to the energetically uphill nature of the photophysical process, and their common requirements. We demonstrate this with the low-cost sky-blue 1,3-diphenylisobenzofuran (DPBF). Having satisfied the criteria for TTA-UC, we show DPBF as a photon upconverter (I(th) 92 mW cm(−2)), and henceforth demonstrate it as a bright emitter for FuLEDs. Notably, the devices achieved 6.5% external quantum efficiency (above the ∼5% threshold without triplet contribution), and triplet-exciton-fusion-generated fluorescence contributes up to 44% of the electroluminescence, as shown by transient measurements. Here, triplet fusion translates to a quantum yield (Φ(TTA-UC)) of 19%, at an electrical excitation of ∼0.01 mW cm(−2). The enhancement is meaningful for commercial blue OLED displays. We also found DPBF to have decent hole mobilities of ∼0.08 cm(2) V(−1) s(−1). This additional finding can lead to DPBF being used in other capacities in various printable electronics. |
format | Online Article Text |
id | pubmed-8886671 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | RSC |
record_format | MEDLINE/PubMed |
spelling | pubmed-88866712022-03-24 Photon-upconverters for blue organic light-emitting diodes: a low-cost, sky-blue example Yang, Le Chua, Xian Wei Yang, Zhihong Ding, Xiangpeng Yu, Yong Suwardi, Ady Zhao, Meng Ke, Karen Lin Ehrler, Bruno Di, Dawei Nanoscale Adv Chemistry In the research ecosystem's quest towards having deployable organic light-emitting diodes with higher-energy emission (e.g., blue light), we advocate focusing on fluorescent emitters, due to their relative stability and colour purity, and developing design strategies to significantly improve their efficiencies. We propose that all triplet–triplet annihilation upconversion (TTA-UC) emitters would make good candidates for triplet fusion-enhanced OLEDs (“FuLEDs”), due to the energetically uphill nature of the photophysical process, and their common requirements. We demonstrate this with the low-cost sky-blue 1,3-diphenylisobenzofuran (DPBF). Having satisfied the criteria for TTA-UC, we show DPBF as a photon upconverter (I(th) 92 mW cm(−2)), and henceforth demonstrate it as a bright emitter for FuLEDs. Notably, the devices achieved 6.5% external quantum efficiency (above the ∼5% threshold without triplet contribution), and triplet-exciton-fusion-generated fluorescence contributes up to 44% of the electroluminescence, as shown by transient measurements. Here, triplet fusion translates to a quantum yield (Φ(TTA-UC)) of 19%, at an electrical excitation of ∼0.01 mW cm(−2). The enhancement is meaningful for commercial blue OLED displays. We also found DPBF to have decent hole mobilities of ∼0.08 cm(2) V(−1) s(−1). This additional finding can lead to DPBF being used in other capacities in various printable electronics. RSC 2022-01-24 /pmc/articles/PMC8886671/ /pubmed/35342862 http://dx.doi.org/10.1039/d1na00803j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Yang, Le Chua, Xian Wei Yang, Zhihong Ding, Xiangpeng Yu, Yong Suwardi, Ady Zhao, Meng Ke, Karen Lin Ehrler, Bruno Di, Dawei Photon-upconverters for blue organic light-emitting diodes: a low-cost, sky-blue example |
title | Photon-upconverters for blue organic light-emitting diodes: a low-cost, sky-blue example |
title_full | Photon-upconverters for blue organic light-emitting diodes: a low-cost, sky-blue example |
title_fullStr | Photon-upconverters for blue organic light-emitting diodes: a low-cost, sky-blue example |
title_full_unstemmed | Photon-upconverters for blue organic light-emitting diodes: a low-cost, sky-blue example |
title_short | Photon-upconverters for blue organic light-emitting diodes: a low-cost, sky-blue example |
title_sort | photon-upconverters for blue organic light-emitting diodes: a low-cost, sky-blue example |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8886671/ https://www.ncbi.nlm.nih.gov/pubmed/35342862 http://dx.doi.org/10.1039/d1na00803j |
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