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Synthesis of Mesoporous Eu(3+)-Doped Zinc/Silicate Phosphors for Highly Selective and Sensitive Detection of Sulfide Ions

[Image: see text] A mesoporous Eu(3+)-doped zinc/silicate phosphor with a large surface area (>100 m(2)g(–1)) and amorphous structure was prepared in an aqueous solution without using any organic template. The residual concentration of the Zn(2+) ion in the filtrate is lower than the standard of...

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Autores principales: Hsu, Chun-Han, Liu, Chao-En, Lai, Lou-Yun, Kuo, Mei-Te, He, Jia-Rung, Lin, Hong-Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10666151/
https://www.ncbi.nlm.nih.gov/pubmed/38027393
http://dx.doi.org/10.1021/acsomega.3c06823
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author Hsu, Chun-Han
Liu, Chao-En
Lai, Lou-Yun
Kuo, Mei-Te
He, Jia-Rung
Lin, Hong-Ping
author_facet Hsu, Chun-Han
Liu, Chao-En
Lai, Lou-Yun
Kuo, Mei-Te
He, Jia-Rung
Lin, Hong-Ping
author_sort Hsu, Chun-Han
collection PubMed
description [Image: see text] A mesoporous Eu(3+)-doped zinc/silicate phosphor with a large surface area (>100 m(2)g(–1)) and amorphous structure was prepared in an aqueous solution without using any organic template. The residual concentration of the Zn(2+) ion in the filtrate is lower than the standard of effluent 3.5 ppm under a pH 8–11 preparation condition. When a sulfide ion (S(2–)) is present in aqueous solution, the phosphor can react with the sulfide ion to transform from the amorphous structure to the crystalline ZnS, which causes structural transformation and a subsequent decrease in luminescent intensity. This distinct phosphor with a high surface area and amorphous structure can be applied through the structure transformation mechanism for highly selective and sensitive detection of the sulfide ions at low concentrations. In addition, the luminescent efficiency was obtained from adjustments in the pH value, calcination temperature, and Eu(3+) ion concentration. The quenching efficiency, the limit of detection (C(LOD)), S(2–) ion selectivity, and phosphor regeneration ability were systematically explored in sulfide ion detection tests. Due to the novel S(2–) ion-induced structural transformation, we found that the amorphous Eu(3+)-doped zinc/silicate phosphors demonstrate a C(LOD) sensitivity as low as 1.8 × 10(–7) M and a high Stern–Volmer constant (K(SV)) of 3.1 × 10(4) M(–1). Furthermore, the phosphors were easily regenerated through simple calcination at 500 °C and showed a K(SV) value of 1.4 × 10(4) M(–1). Overall, the Eu(3+)-doped zinc/silicates showed many advantageous properties for detecting sulfide ions, including low toxicity, green synthesis, good selectivity, high sensitivity, and good renewability.
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spelling pubmed-106661512023-11-07 Synthesis of Mesoporous Eu(3+)-Doped Zinc/Silicate Phosphors for Highly Selective and Sensitive Detection of Sulfide Ions Hsu, Chun-Han Liu, Chao-En Lai, Lou-Yun Kuo, Mei-Te He, Jia-Rung Lin, Hong-Ping ACS Omega [Image: see text] A mesoporous Eu(3+)-doped zinc/silicate phosphor with a large surface area (>100 m(2)g(–1)) and amorphous structure was prepared in an aqueous solution without using any organic template. The residual concentration of the Zn(2+) ion in the filtrate is lower than the standard of effluent 3.5 ppm under a pH 8–11 preparation condition. When a sulfide ion (S(2–)) is present in aqueous solution, the phosphor can react with the sulfide ion to transform from the amorphous structure to the crystalline ZnS, which causes structural transformation and a subsequent decrease in luminescent intensity. This distinct phosphor with a high surface area and amorphous structure can be applied through the structure transformation mechanism for highly selective and sensitive detection of the sulfide ions at low concentrations. In addition, the luminescent efficiency was obtained from adjustments in the pH value, calcination temperature, and Eu(3+) ion concentration. The quenching efficiency, the limit of detection (C(LOD)), S(2–) ion selectivity, and phosphor regeneration ability were systematically explored in sulfide ion detection tests. Due to the novel S(2–) ion-induced structural transformation, we found that the amorphous Eu(3+)-doped zinc/silicate phosphors demonstrate a C(LOD) sensitivity as low as 1.8 × 10(–7) M and a high Stern–Volmer constant (K(SV)) of 3.1 × 10(4) M(–1). Furthermore, the phosphors were easily regenerated through simple calcination at 500 °C and showed a K(SV) value of 1.4 × 10(4) M(–1). Overall, the Eu(3+)-doped zinc/silicates showed many advantageous properties for detecting sulfide ions, including low toxicity, green synthesis, good selectivity, high sensitivity, and good renewability. American Chemical Society 2023-11-07 /pmc/articles/PMC10666151/ /pubmed/38027393 http://dx.doi.org/10.1021/acsomega.3c06823 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Hsu, Chun-Han
Liu, Chao-En
Lai, Lou-Yun
Kuo, Mei-Te
He, Jia-Rung
Lin, Hong-Ping
Synthesis of Mesoporous Eu(3+)-Doped Zinc/Silicate Phosphors for Highly Selective and Sensitive Detection of Sulfide Ions
title Synthesis of Mesoporous Eu(3+)-Doped Zinc/Silicate Phosphors for Highly Selective and Sensitive Detection of Sulfide Ions
title_full Synthesis of Mesoporous Eu(3+)-Doped Zinc/Silicate Phosphors for Highly Selective and Sensitive Detection of Sulfide Ions
title_fullStr Synthesis of Mesoporous Eu(3+)-Doped Zinc/Silicate Phosphors for Highly Selective and Sensitive Detection of Sulfide Ions
title_full_unstemmed Synthesis of Mesoporous Eu(3+)-Doped Zinc/Silicate Phosphors for Highly Selective and Sensitive Detection of Sulfide Ions
title_short Synthesis of Mesoporous Eu(3+)-Doped Zinc/Silicate Phosphors for Highly Selective and Sensitive Detection of Sulfide Ions
title_sort synthesis of mesoporous eu(3+)-doped zinc/silicate phosphors for highly selective and sensitive detection of sulfide ions
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10666151/
https://www.ncbi.nlm.nih.gov/pubmed/38027393
http://dx.doi.org/10.1021/acsomega.3c06823
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