Issue 11, 2022

The structural and luminescence properties of plexcitonic structures based on Ag2S/l-Cys quantum dots and Au nanorods

Abstract

A technique of obtaining plexitonic structures based on Ag2S quantum dots passivated with L-cysteine (Ag2S/L-Cys QDs) in the presence of Au nanorods passivated with cetyltrimethylammonium bromide molecules (Au/CTAB NRs) with controlled luminescence properties has been developed. The structural and luminescence properties of Ag2S/L-Cys QDs with Au/CTAB NRs are studied. The effect of plasmonic Au/CTAB NRs on IR trap state luminescence (750 nm) is considered. It has been found that the direct interaction between the components of the plexcitonic nanostructure leads to a significant luminescence quenching of Ag2S/L-Cys QDs, with the luminescence lifetime being constant. This is the evidence for photoinduced charge transfer. The spatial separation of the components of plexcitonic nanostructures due to the introduction of a polymer – poly(diallyldimethylammonium chloride) (polyDADMAC) provides a means to change their mutual arrangement and achieve an increase in the IR trap state luminescence intensity and a decrease in the luminescence lifetime from 7.2 ns to 4.5 ns. With weak plexcitonic coupling in the nanostructures [Ag2S QD/L-Cys]/[polyDADMAC]/[Au/CTAB NRs], the possibility of increasing the quantum yield of trap state luminescence for Ag2S QDs due to the Purcell effect has been demonstrated. In the case of formation [Ag2S QD/L-Cys]/[polyDADMAC]/[Au/CTAB NRs] a transformation of shallow trap state structure was established using the thermostimulated luminescence method.

Graphical abstract: The structural and luminescence properties of plexcitonic structures based on Ag2S/l-Cys quantum dots and Au nanorods

Associated articles

Article information

Article type
Paper
Submitted
03 Dec 2021
Accepted
14 Feb 2022
First published
24 Feb 2022
This article is Open Access
Creative Commons BY license

RSC Adv., 2022,12, 6525-6532

The structural and luminescence properties of plexcitonic structures based on Ag2S/L-Cys quantum dots and Au nanorods

I. G. Grevtseva, O. V. Ovchinnikov, M. S. Smirnov, A. S. Perepelitsa, T. A. Chevychelova, V. N. Derepko, A. V. Osadchenko and A. S. Selyukov, RSC Adv., 2022, 12, 6525 DOI: 10.1039/D1RA08806H

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