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JOURNALS // Nanosystems: Physics, Chemistry, Mathematics // Archive

Nanosystems: Physics, Chemistry, Mathematics, 2018 Volume 9, Issue 4, Pages 507–512 (Mi nano337)

This article is cited in 2 papers

CHEMISTRY AND MATERIAL SCIENCE

An effective nanostructured green phosphor Zn$_2$SiO$_4$:Mn$^{2+}$ prepared by sol-gel method

K. A. Sergeevaa, A. A. Sergeevb, A. A. Rempelc

a Ural Federal University, Mira, 19, Ekaterinburg, 620002, Russia
b Far-Easten Federal University, Sukhanova, 8, Vladivostok, 690091, Russia
c Institute of Metallurgy, Ural Branch of the Russian Academy of Sciences, Amundsena, 101, Ekaterinburg, 620016, Russia

Abstract: A nanostructured willemite doped with manganese (Zn$_2$SiO$_4$:Mn$^{2+}$) was synthesized by sol-gel method followed by high-temperature annealing. Prepared Zn$_2$SiO$_4$:Mn$^{2+}$ is characterized by average particle size of 100 nm, narrow particle size distribution, and high crystallinity. Under UV-excitation nanostructured willemite shows an intensive photoluminescence at 520 nm corresponded to activator Mn$^{2+}$ emission. It was found that the emission decay curves of willemite becomes non-exponential with increasing of manganese content. Zn$_2$SiO$_4$:Mn$^{2+}$ reveals long-lasting phosphorescence up to 45 ms. Absolute quantum yield of Zn$_2$SiO$_4$:Mn$^{2+}$ reaches 47 % at 0.1 at. % ofMn$^{2+}$. The luminescence concentration quenching effect at Mn$^{2+}$ concentration higher than 1 at % is observed.

Keywords: willemite, manganese, photoluminescence, quantum yield.

PACS: 78.55.-m, 81.20-n

Received: 10.07.2018

Language: English

DOI: 10.17586/2220-8054-2018-9-4-507-512



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