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JOURNALS // Optics and Spectroscopy // Archive

Optics and Spectroscopy, 2020 Volume 128, Issue 12, Pages 1926–1932 (Mi os235)

This article is cited in 4 papers

Optics of low-dimensional structures, mesostructures, and metamaterials

Luminescence quantum yield and recombination constants in colloidal core/shell Ag$_{2}$S/ZnS and Ag$_{2}$S/SiO$_{2}$ quantum dots

O. V. Ovchinnikov, M. S. Smirnov, S. V. Aslanov

Voronezh State University

Abstract: The luminescence properties of colloidal Ag$_{2}$S quantum dots (QDs) with ZnS or SiO$_2$ shells coated with thioglycolic or 2-mercaptopropionic acids are comparatively analyzed. It is demonstrated that the quantum yield of the IR recombination luminescence of colloidal Ag$_2$S QDs increases by a factor of up to 35 as a result of formation of ZnS or SiO$_2$ shells with a simultaneous increase in the average luminescence lifetime. It is shown that the radiative and nonradiative recombination constants for core/shell Ag$_{2}$S/ZnS QDs coated with thioglycolic acid decrease, which is explained by localization of electrons in the shell and localization of holes in the core. In core/shell Ag$_{2}$S/SiO$_{2}$ QDs coated with 2-mercaptopropionic acid, the radiative recombination constant increases and the nonradiative recombination constant decreases. In this case, the increase in the radiative recombination constant is caused by localization of electrons and holes in the core. The decrease in the nonradiative recombination constant is explained by passivation of interface defects of QDs upon the shell formation.

Keywords: quantum dots, luminescence, recombination constants, core/shell.

Received: 27.07.2020
Revised: 27.07.2020
Accepted: 01.09.2020

DOI: 10.21883/OS.2020.12.50331.206-20


 English version:
Optics and Spectroscopy, 2020, 128:12, 2028–2035

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© Steklov Math. Inst. of RAS, 2024