Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/101461
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Title: Electric-field-enhanced electroluminescence color tuning of colloidal type-II tetrapods
Authors: Wang, C 
Fu, J 
Wei, Q 
Ren, H 
Liu, Q 
Zhou, L 
Wang, P 
Li, M 
Wang, C 
Fu, J 
Wei, Q 
Ren, H 
Liu, Q 
Zhou, L 
Wang, P 
Li, M 
Issue Date: Jun-2023
Source: Nano letters, 28 June 2023, v. 23, no. 12, p. 5705-5712
Abstract: Color-tunable electroluminescence (EL) from a single emitting material can be used to develop single-pixel multicolor displays. However, finding materials capable of broad EL color tuning remains challenging. Herein, we report the observation of broad voltage-tunable EL in colloidal type-II InP/ZnS quantum-dot-seeded CdS tetrapod (TP) LEDs. The EL color can be tuned from red to bluish white by varying the red and blue emission intensities from type-II interfaces and arms, respectively. The capacitor device proves that an external electric field can enhance the color tuning in type-II TPs. COMSOL simulations, numerical calculations, and transient absorption measurements are performed to understand the underlying photophysical mechanism. Our results indicate that the reduced hole relaxation rate from the arm to the quantum dot core can enhance the emission from the CdS arms, which is favorable for EL color tuning. This study provides a novel method to realize voltage-tunable EL colors with potential in display and micro-optoelectronic applications.
Keywords: carrier dynamics
colloidal nanostructures
EL color tuning
type-II band alignment
Publisher: American Chemical Society
Journal: Nano letters 
ISSN: 1530-6984
EISSN: 1530-6992
DOI: 10.1021/acs.nanolett.3c01408
Rights: © 2023 American Chemical Society
This document is the Accepted Manuscript version of a Published Work that appeared in final form in Nano Letters, copyright © 2023 American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acs.nanolett.3c01408.
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