TY - JOUR
T1 - Enhanced photo-decomposition of methylene blue and toluene with (Ag,Na)-TiO2/Sr4All4O25:Eu,Dy heterojunction photocatalyst synthesized by coprecipitation method
AU - Kang, Hyun Sung
AU - Cho, Bumrae
AU - Kim, Jung Sik
N1 - Publisher Copyright:
© Akadémiai Kiadó Zrt 2025.
PY - 2025/4
Y1 - 2025/4
N2 - The TiO2/Sr4Al14O25: Eu2+,Dy3+ heterojunction photocatalyst has been prepared by TiO2 nanoparticles coated on the Sr4Al14O25:Eu,Dy phosphor substrate using a coprecipitation reaction method. To improve the generation of charge carriers in the photocatalyst, Na and Ag elements were impregnated on TiO2 nanoparticles by adding NaHCO3 and AgNO3, respectively. The (Ag,Na)-impregnated TiO2/Sr4Al14O25: Eu2+,Dy3+ hybrid photocatalyst system was synthesized under various conditions, including different Ag concentrations (0–0.08 M) and heat treatment temperatures (200–500 °C). The photocatalytic performance of (Ag,Na)-impregnated TiO2/Sr4Al14O25: Eu2+,Dy3+ hybrid photocatalysts was analyzed through the photobleaching of methylene blue(MB) dye solution and decomposition of toluene gas. In the hybrid photocatalysts of TiO2-coated long-lasting phosphors, the phosphor may act as an internal light source toward the acceleration or sustenance of photocatalytic reactivity even in the absence of external light irradiation. The photocatalytic reactivity of (Ag,Na)-TiO2/Sr4Al14O25: Eu2+,Dy3+ hybrid photocatalyst surpassed that of Na-TiO2/Sr4Al14O25: Eu2+,Dy3+ without Ag impregnation. The (0.06 M Ag, Na)-TiO2/Sr4Al14O25:Eu2+,Dy3+ photocatalyst and TiO2/Sr4Al14O25: Eu2+,Dy3+ without Ag impregnation degraded a 10 ppm toluene gas about 65% and 30% in 150 min under visible light, respectively. This superior performance can be primarily ascribed to the synergistic interaction between (Ag,Na) and TiO2.
AB - The TiO2/Sr4Al14O25: Eu2+,Dy3+ heterojunction photocatalyst has been prepared by TiO2 nanoparticles coated on the Sr4Al14O25:Eu,Dy phosphor substrate using a coprecipitation reaction method. To improve the generation of charge carriers in the photocatalyst, Na and Ag elements were impregnated on TiO2 nanoparticles by adding NaHCO3 and AgNO3, respectively. The (Ag,Na)-impregnated TiO2/Sr4Al14O25: Eu2+,Dy3+ hybrid photocatalyst system was synthesized under various conditions, including different Ag concentrations (0–0.08 M) and heat treatment temperatures (200–500 °C). The photocatalytic performance of (Ag,Na)-impregnated TiO2/Sr4Al14O25: Eu2+,Dy3+ hybrid photocatalysts was analyzed through the photobleaching of methylene blue(MB) dye solution and decomposition of toluene gas. In the hybrid photocatalysts of TiO2-coated long-lasting phosphors, the phosphor may act as an internal light source toward the acceleration or sustenance of photocatalytic reactivity even in the absence of external light irradiation. The photocatalytic reactivity of (Ag,Na)-TiO2/Sr4Al14O25: Eu2+,Dy3+ hybrid photocatalyst surpassed that of Na-TiO2/Sr4Al14O25: Eu2+,Dy3+ without Ag impregnation. The (0.06 M Ag, Na)-TiO2/Sr4Al14O25:Eu2+,Dy3+ photocatalyst and TiO2/Sr4Al14O25: Eu2+,Dy3+ without Ag impregnation degraded a 10 ppm toluene gas about 65% and 30% in 150 min under visible light, respectively. This superior performance can be primarily ascribed to the synergistic interaction between (Ag,Na) and TiO2.
KW - Ag-doping
KW - Coprecipitation
KW - Heterojunction photocatalyst
KW - SrAlO:Eu,Dy
KW - TiO
UR - https://www.scopus.com/pages/publications/85213959152
U2 - 10.1007/s11144-024-02783-y
DO - 10.1007/s11144-024-02783-y
M3 - Article
AN - SCOPUS:85213959152
SN - 1878-5190
VL - 138
SP - 657
EP - 671
JO - Reaction Kinetics, Mechanisms and Catalysis
JF - Reaction Kinetics, Mechanisms and Catalysis
IS - 2
M1 - 107132
ER -