| Literature DB >> 26471479 |
Qianqian Huang1, Jing Chen2, Jian Zhao3, Jiangyong Pan4, Wei Lei5, Zichen Zhang6.
Abstract
In this paper, we have synthesized ZnCdSeS quantum dots (QDs)-gold nanoparticle (Au NPs) hybrids in aqueous solution via bi-functional linker mercaptoacetic acid (MPA). The absorption peaks of ZnCdSeS QDs and Au are both located at 520 nm. It is investigated that PL intensity of QD-Au hybrid can be affected by the amounts of Au and pH value of hybrid solution. The located surface plasmon resonance (LSPR) effect of QD-Au NPs has been demonstrated by increased fluorescence intensity. The phenomenon of fluorescence enhancement can be maximized under the optimized pH value of 8.5. LSPR-enhanced photoluminescence property of QD-Au hybrid will be beneficial for the potential applications in the area of biological imaging and detection.Entities:
Keywords: LSPR; Metal–semiconductor system; Quantum dot
Year: 2015 PMID: 26471479 PMCID: PMC4607683 DOI: 10.1186/s11671-015-1067-0
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1Construction process of QD-Au discrete nanostructures
Fig. 2(Color online) a and b The absorption and PL intensity spectra of QDs in chloroform and in water (PH value = 8.5). c The absorption spectra of Au NPs individually and QDs-Au NPs conjugates. d PL intensity spectra of QDs-Au NPs hybrids. The quantity of Au NPs was varied from 0 to 120 μL both in (c) and (d)
Fig. 3TEM images of a Au NPs, b–f QDs-Au NPs hybrids
Fig. 4Model representing the mechanism behind NBE enhancement in ZnCdSeS quantum dots (QDs)-gold nanoparticle (Au NPs) hybrids
Fig. 5a The absorption spectra b peak fluorescence intensity of QD-Au hybrid in aqueous solution (pH value =8.5, 9.5, 10.8, 11.7)