Synthesis of TiO2/SBA-15 Nanocomposites by Hydrolysis of Organometallic Ti Precursors for Photocatalytic NO Abatement

被引:0
作者
El Atti, Ons [1 ,2 ]
Hot, Julie [2 ]
Fajerwerg, Katia [1 ]
Lorber, Christian [1 ]
Lebeau, Benedicte [3 ,4 ]
Ryzhikov, Andrey [3 ,4 ]
Kahn, Myrtil [1 ]
Colliere, Vincent [1 ]
Coppel, Yannick [1 ]
Ratel-Ramond, Nicolas [5 ]
Menini, Philippe [6 ]
Fau, Pierre [5 ]
机构
[1] CNRS, Lab Chim Coordinat, UPR 8241, 205 Route Narbonne, F-31077 Toulouse 4, France
[2] INSA UPS Genie Civil, Lab Mat & Durabil Construct, 135 Ave Rangueil, F-31077 Toulouse 4, France
[3] Univ Haute Alsace, CNRS, UMR 7361, Inst Sci Mat Mulhouse IS2M,Axe Mat Poros Controlee, F-68093 Mulhouse, France
[4] Univ Strasbourg, F-67000 Strasbourg, France
[5] Univ Toulouse, Lab Phys & Chim Nanoobjets, UMR 5215, CNRS,UPS,INSA, 135 Ave Rangueil, F-31077 Toulouse 4, France
[6] Univ Toulouse, Lab Anal & Architecture Syst, CNRS UPR 8001, 7 Ave Colonel Roche, F-31031 Toulouse 4, France
关键词
mesoporous silica; titanium(III) amidinate precursor; TiO2; nanoparticles; photocatalysis; NO degradation; air quality; MESOPOROUS SILICA; SBA-15; TITANIA; OXIDATION; PHOTODEGRADATION; PERFORMANCE; SEPARATION; OXIDES;
D O I
10.3390/inorganics12070183
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The development of advanced photocatalysts for air pollution removal is essential to improve indoor air quality. TiO2/mesoporous silica SBA-15 nanocomposites were synthesized using an organometallic decoration method, which leverages the high reactivity of Ti precursors to be hydrolyzed on the surface water groups of silica supports. Both lab-made Ti(III) amidinate and commercial Ti(IV) amino precursors were utilized to react with water-rich SBA-15, obtained through a hydration process. The hydrated SBA-15 and the TiO2/SBA-15 nanocomposites were characterized using TGA, FTIR, H-1 and Si-29 NMR, TEM, SEM, N-2 physisorption, XRD, and WAXS. This one-step TiO2 decoration method achieved a loading of up to 51.5 wt.% of approximately 9 nm anatase particles on the SBA-15 surface. This structuring provided excellent accessibility of TiO2 particles for photocatalytic applications under pollutant gas and UV-A light exposure. The combination with the high specific surface area of SBA-15 resulted in the efficient degradation of 400 ppb of NO pollutant gas. Due to synergistic effects, the best nanocomposite in this study demonstrated a NO abatement performance of 4.0% per used mg of TiO2, which is 40% more efficient than the reference photocatalytic material TiO2 P-25.
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页数:19
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