2008Journal of Materials ChemistryRequires access

Toward efficient blue-emitting thiol-capped Zn1−xCdxSe nanocrystals

Vladimir Lesnyak, Alexei Plotnikov, Nikolai Gaponik, Alexander Eychmüller

Open publisher page 32 citations

Abstract

In order to explore synthetic approaches to strongly emitting nanoparticles covering the UV–blue spectral region, the photochemical treatment of ZnSe and Zn1−xCdxSe nanocrystals (NCs) capped by thioglycolic acid (TGA) in the presence of Zn2+ and Cd2+ ions was investigated. A reproducible method of tuning the luminescence of these NCs from the UV to the blue spectral region was developed. Using this method, stable aqueous NCs emitting in the visible region with photoluminescence (PL) maxima ranging from 390 to 460 nm and with photoluminescence quantum efficiencies (PL QEs) of 20–30% were obtained. The effects of the experimental conditions and of the initial composition of the NCs on their optical properties are discussed.

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What this paper is about

In order to explore synthetic approaches to strongly emitting nanoparticles covering the UV–blue spectral region, the photochemical treatment of ZnSe and Zn1−xCdxSe nanocrystals (NCs) capped by thioglycolic acid (TGA) in the presence of Zn2+ and Cd2+ ions was investigated. A reproducible method of tuning the luminescence of these NCs from the UV to the blue spectral region was developed. Using this method, stable aqueous NCs emitting in the visible region with photoluminescence (PL) maxima ranging from 390 to 460 nm and with photoluminescence quantum efficiencies (PL QEs) of 20–30% were obtained. The effects of the experimental conditions and of the initial composition of the NCs on their optical properties are discussed.

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Available abstract

In order to explore synthetic approaches to strongly emitting nanoparticles covering the UV–blue spectral region, the photochemical treatment of ZnSe and Zn1−xCdxSe nanocrystals (NCs) capped by thioglycolic acid (TGA) in the presence of Zn2+ and Cd2+ ions was investigated. A reproducible method of tuning the luminescence of these NCs from the UV to the blue spectral region was developed. Using this method, stable aqueous NCs emitting in the visible region with photoluminescence (PL) maxima ranging from 390 to 460 nm and with photoluminescence quantum efficiencies (PL QEs) of 20–30% were obtained. The effects of the experimental conditions and of the initial composition of the NCs on their optical properties are discussed.

Key concepts: Thioglycolic acid, Photoluminescence, Nanocrystal, Materials science, Luminescence, Aqueous solution, Nanoparticle, Quantum dot

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