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The Multiple Promotion Effects of Ammonium Phosphate-Modified Ag3PO4 on Photocatalytic Performance.
Liu, Qin; Li, Na; Qiao, Zheng; Li, Wenjuan; Wang, Linlin; Zhu, Shuao; Jing, Zhihong; Yan, Tingjiang.
Afiliación
  • Liu Q; The Key Laboratory of Life-Organic Analysis, College of Chemistry and Chemical Engineering, Qufu, China.
  • Li N; Qufu Normal University Library, Qufu Normal University, Qufu, China.
  • Qiao Z; The Key Laboratory of Life-Organic Analysis, College of Chemistry and Chemical Engineering, Qufu, China.
  • Li W; The Key Laboratory of Life-Organic Analysis, College of Chemistry and Chemical Engineering, Qufu, China.
  • Wang L; The Key Laboratory of Life-Organic Analysis, College of Chemistry and Chemical Engineering, Qufu, China.
  • Zhu S; The Key Laboratory of Life-Organic Analysis, College of Chemistry and Chemical Engineering, Qufu, China.
  • Jing Z; The Key Laboratory of Life-Organic Analysis, College of Chemistry and Chemical Engineering, Qufu, China.
  • Yan T; The Key Laboratory of Life-Organic Analysis, College of Chemistry and Chemical Engineering, Qufu, China.
Front Chem ; 7: 866, 2019.
Article en En | MEDLINE | ID: mdl-31921784
ABSTRACT
Phosphate ( PO 4 3 - ) modification of semiconductor photocatalysts such as TiO2, C3N4, BiVO4, and etc. has been shown positive effect on the enhancement of photocatalytic performance. In the present study, we demonstrate a novel one-pot surface modification route on Ag3PO4 photocatalyst by ammonium phosphate [(NH4)3PO4], which combines PO 4 3 - modification with ammonium ( NH 4 + ) etching to show multiple effects on the structural variation of Ag3PO4 samples. The modified Ag3PO4 photocatalysts exhibit much higher photocatalytic performance than bare Ag3PO4 for the degradation of organic dye solutions under visible light irradiation. It is indicated that the NH 4 + etching favors the surface transition from Ag3PO4 to metallic Ag nanoparticles, resulting in the fast capture of photogenerated electrons and the followed generation of O 2 · - radicals. The strongly adsorbed PO 4 3 - on the Ag3PO4 surfaces can further provide more negative electrostatic field, which improves the separation of photogenerated electron-hole pairs by inducing the holes to directly flow to the surface and then enhances the formation of reactive ·OH radicals. Furthermore, the photocatalytic performance of the modified Ag3PO4 photocatalysts can be optimized by monitoring the concentration of (NH4)3PO4 that is 1 mM.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Front Chem Año: 2019 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Front Chem Año: 2019 Tipo del documento: Article País de afiliación: China
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