Investigation of the photocatalytic potential enhancement of silica monolith decorated tin oxide nanoparticles through experimental and theoretical studies
Photodegradation of organic pollutants is considered to be the most suitable and cheaper technique to counter decontamination issues. Metal nanoparticles are considered the most effective heterogeneous photocatalysts for photodegradation of organic pollutants, but neat nanoparticles agglomerate in the reaction medium and display less photocatalytic efficiency. Herein, silica monolith particles (SiO2) were synthesized and utilized as a support medium for the synthesis of SnO(2)nanoparticles to retard their agglomeration. Silica-supported tin oxide nanoparticles (SnO2/SiO(2)NPs) and neat tin oxide nanoparticles (SnO(2)NPs) were prepared through chemical reduction method and characterized by AFM, SEM, TEM, EDX and mapping, XRD, FTIR and zeta sizer. Morphological and mapping analyses revealed that SiO(2)increases the surface area of SnO(2)NPs and magnificently enhances their photocatalytic activity. The neat SnO(2)NPs are highly agglomerated and hence show less photocatalytic activity. XRD and FTIR analyses confirm the synthesis of SnO(2)NPs. The neat SnO(2)NPs have a PDI of 0.51, which reveal much variation in the particles' size and have a surface charge of -11.2 +/- 0.87 mV, which is not enough for the NPs' repulsion in suspended form and hence are agglomerated. The SnO2/SiO(2)NPs degraded about 94.58% and 93.73% orange II (O II) dye while SnO(2)NPs degraded 65.93% and 46.11% dye within 30 min irradiation under UV and visible light respectively. The enhanced photocatalytic activity of SnO2/SiO(2)NPs is due to the synergistic effect of rapid adsorption followed by drastic photodegradation of dye. The SnO2/SiO(2)NPs are much more sustainable than SnO(2)NPs due to easy recycling and washing and the recovered SnO2/SiO(2)NPs degraded about 83.38% of dye while SnO(2)degraded 21.91% within 30 min. In addition, the density functional theory (DFT) calculations show that the SnO2/SiO(2)NPs have greater adsorption capacity then pristine SiO(2)and SnO(2)surfaces, having shorter binding distances, a largerE(ads)value (4.29 eV) and a larger reduction in band gap.
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Univ Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
Sichuan Univ, Coll Architecture & Environm, Chengdu 610065, Peoples R ChinaUniv Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
Li, Kanglu
He, Ye
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Univ Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R ChinaUniv Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
He, Ye
Chen, Peng
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Univ Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
Southwest Petr Univ, Sch Mat Sci & Engn, Ctr New Energy Mat & Technol, Chengdu 610500, Peoples R ChinaUniv Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
Chen, Peng
Wang, Hong
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Univ Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R ChinaUniv Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
Wang, Hong
Sheng, Jianping
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Univ Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R ChinaUniv Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
Sheng, Jianping
Cui, Wen
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Univ Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
Southwest Petr Univ, Sch Mat Sci & Engn, Ctr New Energy Mat & Technol, Chengdu 610500, Peoples R ChinaUniv Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
Cui, Wen
Leng, Geng
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Univ Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
Univ Elect Sci & Technol China, Sch Resources & Environm, Chengdu 611731, Peoples R ChinaUniv Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
Leng, Geng
Chu, Yinghao
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Sichuan Univ, Coll Architecture & Environm, Chengdu 610065, Peoples R ChinaUniv Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
Chu, Yinghao
Wang, Zhiming
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Univ Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R ChinaUniv Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
Wang, Zhiming
Dong, Fan
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Univ Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R ChinaUniv Elect Sci & Technol China, Inst Fundamental & Frontier Sci, Res Ctr Environm Sci & Technol, Chengdu 611731, Peoples R China
机构:
Ferhat Abbas Setif 1 Univ, Res Unit Emergent Mat, Setif, Algeria
Ferhat Abbas Setif 1 Univ, Fac Technol, Dept Proc Engn, Setif, AlgeriaFerhat Abbas Setif 1 Univ, Res Unit Emergent Mat, Setif, Algeria
Bouibed, Aghiles
Doufnoune, Rachida
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Ferhat Abbas Setif 1 Univ, Res Unit Emergent Mat, Setif, Algeria
Ferhat Abbas Setif 1 Univ, Fac Technol, Dept Proc Engn, Setif, AlgeriaFerhat Abbas Setif 1 Univ, Res Unit Emergent Mat, Setif, Algeria
Doufnoune, Rachida
Poncot, Marc
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Univ Lorraine, CNRS, UMR 7198, Jean Lamour Inst,Mat Sci & Engn Met Dept, Nancy, FranceFerhat Abbas Setif 1 Univ, Res Unit Emergent Mat, Setif, Algeria