Preparation and luminescent properties of ZnO quantum dots nanocomposites

Nanocomposites consisting of quantum dots (QDs) incorporated within polymer matrices have attracted great research interests due to their unique functional properties combining the advantages of both inorganic semiconductors and organic polymers. Among various inorganic-organic nanocomposites being...

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Main Author: Wang, Libo
Other Authors: Mei Ting
Format: Theses and Dissertations
Language:English
Published: 2014
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Online Access:https://hdl.handle.net/10356/55862
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-558622023-03-04T16:48:34Z Preparation and luminescent properties of ZnO quantum dots nanocomposites Wang, Libo Mei Ting Hu Xiao School of Materials Science & Engineering DRNTU::Engineering::Materials::Composite materials Nanocomposites consisting of quantum dots (QDs) incorporated within polymer matrices have attracted great research interests due to their unique functional properties combining the advantages of both inorganic semiconductors and organic polymers. Among various inorganic-organic nanocomposites being studied, ZnO QDs incorporated within different polymer matrices have been widely studied and the nanocomposites exhibit good luminescent properties with high photostability. Nevertheless, there is still lack of study concerning the electroluminescent properties of ZnO QDs nanocomposites. The objectives of this work are to explore a facile method to synthesize polymer/ZnO QDs nanocomposites thin films and to further investigate their luminescent properties. Nanocomposites synthesized via in-situ thermal decomposition of zinc precursor at relatively low temperature, termed as ‘polymerothermal method’, are free of impurity and therefore very suitable for fundamental studies on luminescent properties. Furthermore, the large interface area between polymers and ZnO QDs is very important to study the defect related emission from ZnO QDs and the possible interaction between them. In this work, poly(methyl methacrylate) (PMMA)with good optical transparency was firstly employed for preparation of nanocomposite with uniformly embedded ZnO QDs. The as-prepared PMMA/ZnO QDs nanocomposite exhibits photoluminescence (PL) with strong UV emission but weak visible emission, which is similar to those nanocomposites that synthesized via physical blending method. However, it is interesting to find that the electroluminescence (EL) of PMMA/ZnO QDs nanocomposite based light-emitting devices (LEDs) shows broad emission covering the entire visible range. Based on a detailed analysis carried out by comparing both the PL and EL emission spectra; different carrier recombination pathways corresponding to band edge and defect energy levels are proposed. This finding indicates that the luminescent properties of the nanocomposite are largely depended on the carrier injection method as well as the intrinsic properties of embedded ZnO QDs. The synthetic method was further extended to other polymers. The luminescent properties of nanocomposites can obviously be affected by the polymer matrices; as the polymers can passivate the surface of embedded ZnO QDs to different extents. EL of as-fabricated ZnO QDs based LEDs can be potentially tuned by selection of polymer matrices. The results indicate that the interaction involved between polymers and ZnO QDs could be the key factor of changing the properties of hybrid nanocomposites system. DOCTOR OF PHILOSOPHY (MSE) 2014-04-03T03:02:47Z 2014-04-03T03:02:47Z 2014 2014 Thesis Wang, L. (2014). Preparation and luminescent properties of ZnO quantum dots nanocomposites. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/55862 10.32657/10356/55862 en 154 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Materials::Composite materials
spellingShingle DRNTU::Engineering::Materials::Composite materials
Wang, Libo
Preparation and luminescent properties of ZnO quantum dots nanocomposites
description Nanocomposites consisting of quantum dots (QDs) incorporated within polymer matrices have attracted great research interests due to their unique functional properties combining the advantages of both inorganic semiconductors and organic polymers. Among various inorganic-organic nanocomposites being studied, ZnO QDs incorporated within different polymer matrices have been widely studied and the nanocomposites exhibit good luminescent properties with high photostability. Nevertheless, there is still lack of study concerning the electroluminescent properties of ZnO QDs nanocomposites. The objectives of this work are to explore a facile method to synthesize polymer/ZnO QDs nanocomposites thin films and to further investigate their luminescent properties. Nanocomposites synthesized via in-situ thermal decomposition of zinc precursor at relatively low temperature, termed as ‘polymerothermal method’, are free of impurity and therefore very suitable for fundamental studies on luminescent properties. Furthermore, the large interface area between polymers and ZnO QDs is very important to study the defect related emission from ZnO QDs and the possible interaction between them. In this work, poly(methyl methacrylate) (PMMA)with good optical transparency was firstly employed for preparation of nanocomposite with uniformly embedded ZnO QDs. The as-prepared PMMA/ZnO QDs nanocomposite exhibits photoluminescence (PL) with strong UV emission but weak visible emission, which is similar to those nanocomposites that synthesized via physical blending method. However, it is interesting to find that the electroluminescence (EL) of PMMA/ZnO QDs nanocomposite based light-emitting devices (LEDs) shows broad emission covering the entire visible range. Based on a detailed analysis carried out by comparing both the PL and EL emission spectra; different carrier recombination pathways corresponding to band edge and defect energy levels are proposed. This finding indicates that the luminescent properties of the nanocomposite are largely depended on the carrier injection method as well as the intrinsic properties of embedded ZnO QDs. The synthetic method was further extended to other polymers. The luminescent properties of nanocomposites can obviously be affected by the polymer matrices; as the polymers can passivate the surface of embedded ZnO QDs to different extents. EL of as-fabricated ZnO QDs based LEDs can be potentially tuned by selection of polymer matrices. The results indicate that the interaction involved between polymers and ZnO QDs could be the key factor of changing the properties of hybrid nanocomposites system.
author2 Mei Ting
author_facet Mei Ting
Wang, Libo
format Theses and Dissertations
author Wang, Libo
author_sort Wang, Libo
title Preparation and luminescent properties of ZnO quantum dots nanocomposites
title_short Preparation and luminescent properties of ZnO quantum dots nanocomposites
title_full Preparation and luminescent properties of ZnO quantum dots nanocomposites
title_fullStr Preparation and luminescent properties of ZnO quantum dots nanocomposites
title_full_unstemmed Preparation and luminescent properties of ZnO quantum dots nanocomposites
title_sort preparation and luminescent properties of zno quantum dots nanocomposites
publishDate 2014
url https://hdl.handle.net/10356/55862
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