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Surface-Ligand-Modified CdSe/CdS Nanorods for High-Performance Light-Emitting Diodes

[Image: see text] Colloidal nanocrystals (NCs) play an important role in the field of optoelectronic devices such as photovoltaic cells, photodetectors, and light-emitting diodes (LEDs). The properties of NC films are strongly affected by ligands attached to them, which constitute a barrier for char...

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Autores principales: Zhang, Hui, Mi, Xiaohu, Kang, Bowen, Wu, Yunkai, Zhang, Tingting, Liu, Pai, Sun, Xiaowei, Zhang, Zhenglong, Liu, Ning, Xu, Hongxing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9893313/
https://www.ncbi.nlm.nih.gov/pubmed/36743009
http://dx.doi.org/10.1021/acsomega.2c05730
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author Zhang, Hui
Mi, Xiaohu
Kang, Bowen
Wu, Yunkai
Zhang, Tingting
Liu, Pai
Sun, Xiaowei
Zhang, Zhenglong
Liu, Ning
Xu, Hongxing
author_facet Zhang, Hui
Mi, Xiaohu
Kang, Bowen
Wu, Yunkai
Zhang, Tingting
Liu, Pai
Sun, Xiaowei
Zhang, Zhenglong
Liu, Ning
Xu, Hongxing
author_sort Zhang, Hui
collection PubMed
description [Image: see text] Colloidal nanocrystals (NCs) play an important role in the field of optoelectronic devices such as photovoltaic cells, photodetectors, and light-emitting diodes (LEDs). The properties of NC films are strongly affected by ligands attached to them, which constitute a barrier for charge transport between adjacent NCs. Therefore, the method of surface modification by ligand exchange has been used to improve the electrical conductivity of NC films. However, surface modification to NCs in LEDs can also affect emission characteristics. Among NCs, nanorods have unique properties, such as suppression of nonradiative Auger recombination and linearly polarized light emission. In this work, CdSe/CdS nanorods (NRs) were prepared by the hot injection method. To increase the charge transport into CdSe/CdS NRs, we adopted ligand modification to CdSe/CdS NRs. Using this technique, we could shorten the injection barrier length between CdSe/CdS NRs and adjacent layers. It leads to a more balanced charge injection of electron/hole and a greatly increased current efficiency of CdSe/CdS NR-LEDs. In the NR-LEDs, the ligand exchange boosted the electroluminance, reaching a sixfold increase from 848 cd/m(2) of native surfactants to 5600 cd/m(2) of the exchanged n-octanoic acid ligands at 12 V. The improvement of CdSe/CdS NR-LED performance is closely correlated to the efficient control of charge balance via ligand modification strategy, which is expected to be indispensable to the future NR-LED-based optoelectronic system.
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spelling pubmed-98933132023-02-03 Surface-Ligand-Modified CdSe/CdS Nanorods for High-Performance Light-Emitting Diodes Zhang, Hui Mi, Xiaohu Kang, Bowen Wu, Yunkai Zhang, Tingting Liu, Pai Sun, Xiaowei Zhang, Zhenglong Liu, Ning Xu, Hongxing ACS Omega [Image: see text] Colloidal nanocrystals (NCs) play an important role in the field of optoelectronic devices such as photovoltaic cells, photodetectors, and light-emitting diodes (LEDs). The properties of NC films are strongly affected by ligands attached to them, which constitute a barrier for charge transport between adjacent NCs. Therefore, the method of surface modification by ligand exchange has been used to improve the electrical conductivity of NC films. However, surface modification to NCs in LEDs can also affect emission characteristics. Among NCs, nanorods have unique properties, such as suppression of nonradiative Auger recombination and linearly polarized light emission. In this work, CdSe/CdS nanorods (NRs) were prepared by the hot injection method. To increase the charge transport into CdSe/CdS NRs, we adopted ligand modification to CdSe/CdS NRs. Using this technique, we could shorten the injection barrier length between CdSe/CdS NRs and adjacent layers. It leads to a more balanced charge injection of electron/hole and a greatly increased current efficiency of CdSe/CdS NR-LEDs. In the NR-LEDs, the ligand exchange boosted the electroluminance, reaching a sixfold increase from 848 cd/m(2) of native surfactants to 5600 cd/m(2) of the exchanged n-octanoic acid ligands at 12 V. The improvement of CdSe/CdS NR-LED performance is closely correlated to the efficient control of charge balance via ligand modification strategy, which is expected to be indispensable to the future NR-LED-based optoelectronic system. American Chemical Society 2023-01-19 /pmc/articles/PMC9893313/ /pubmed/36743009 http://dx.doi.org/10.1021/acsomega.2c05730 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Zhang, Hui
Mi, Xiaohu
Kang, Bowen
Wu, Yunkai
Zhang, Tingting
Liu, Pai
Sun, Xiaowei
Zhang, Zhenglong
Liu, Ning
Xu, Hongxing
Surface-Ligand-Modified CdSe/CdS Nanorods for High-Performance Light-Emitting Diodes
title Surface-Ligand-Modified CdSe/CdS Nanorods for High-Performance Light-Emitting Diodes
title_full Surface-Ligand-Modified CdSe/CdS Nanorods for High-Performance Light-Emitting Diodes
title_fullStr Surface-Ligand-Modified CdSe/CdS Nanorods for High-Performance Light-Emitting Diodes
title_full_unstemmed Surface-Ligand-Modified CdSe/CdS Nanorods for High-Performance Light-Emitting Diodes
title_short Surface-Ligand-Modified CdSe/CdS Nanorods for High-Performance Light-Emitting Diodes
title_sort surface-ligand-modified cdse/cds nanorods for high-performance light-emitting diodes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9893313/
https://www.ncbi.nlm.nih.gov/pubmed/36743009
http://dx.doi.org/10.1021/acsomega.2c05730
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