| Literature DB >> 25897301 |
Hongyu Wang1, Ling Xu2, Renqi Zhang2, Zhaoyun Ge2, Wenping Zhang2, Jun Xu2, Zhongyuan Ma2, Kunji Chen2.
Abstract
Au nanoparticles (Au NPs)/CdTe/CdS QDs nanocomposite films were fabricated by deposition of Au NPs and layer-by-layer self-assembly of colloidal CdTe/CdS QDs. Photoluminescence (PL) spectra showed that Au NPs incorporation resulted in an increase of PL intensity about 16-fold compared with that of the samples without Au NPs. PL enhancement of Au NPs/CdTe/CdS QDs nanocomposite films can be controlled by tuning the thickness of spacer layer between the metal nanoparticles (MNPs) and QDs. Optical absorption spectra exhibited the incorporation of Au NPs boosted the absorption of Au NPs/CdTe/CdS QDs nanocomposite films. The results of finite-difference time-domain (FDTD) simulation indicated that the increased sizes of Au NPs resulted in stronger localization of electric field, which boosted the PL intensity of QDs in the vicinity of Au NPs. We thought that these were mainly attributed to localized SP enhancement effects of the Au NPs. Our experiment results demonstrated that Au NPs/QDs nanocomposite films would be a promising candidate for optoelectronic devices application. PACS 78.55.-m; 82.33.Ln; 68.65.Hb.Entities:
Keywords: Finite-difference time-domain; Photoluminescence; Plasmon; Quantum dots
Year: 2015 PMID: 25897301 PMCID: PMC4398686 DOI: 10.1186/s11671-015-0833-3
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1Optical properties of Au NPs and QDs. The absorption spectra of the Au NPs (black line) and QDs (blue line) together with the PL spectrum of the QDs (red line).
Figure 2UV–vis absorption spectra and PL spectra of Au NPs/QDs nanocomposite films with different number of PDDA/PSS bilayers. (a) The absorbance spectra of samples. (b) The PL spectra of samples. The inset showed QDs film’ PL intensities versus the number of spacer layers between Au NPs and QDs.
The and the average size of Au NPs in different deposition times
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| 30 s | 4.85 | 100 ± 5 nm |
| 80 s | 21.9 | 300 ± 5 nm |
Figure 3UV–vis absorption and PL spectra of the Au NPs/QDs nanocomposite films with Au NPs in 30- and 80-s deposition times. (a) The absorption spectra of Au NPs/QDs films with Au NPs in 30-s (blue line) and 80-s (red line) deposition times. (b) The PL spectra of Au NPs/QDs films with Au NPs in 30-s (blue line) and 80-s (red line) deposition times. The inset showed the AFM image of Au NPs in 30-s deposition times, AFM image of Au NPs in 80-s deposition times, and SEM image of Au NPs in 80-s deposition times.
Figure 4The simulated electric field. Simulated electric field surrounding the Au NPs (a,b) and simulated extinction spectra of Au NPs in 30- and 80-s deposition times (c,d).
Figure 5Time-resolved photoluminescence decays of CdTe/CdS QDs film on the quartz substrate. CdTe/CdS QDs film in the absence (black line) and presence (red line) of Au NPs.
Figure 6PL intensity of QDs film at different excitation wavelength (red dot line) and the absorption spectrum of Au NPs (black line).
Figure 7The sketch of electron levels in QDs film.