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采用溶胶-凝胶法合成了TiO2负载锶铁氧体光催化剂,通过XRD、TEM,uV-UVis、VSM等方法对催化剂结构进行了表征,并以高压汞灯为光源,亚甲基兰为目标降解物,对其光催化活性进行了研究.结果表明,TiO2负载锶铁氧体为复合型光催化剂,负载后的复合光催化剂保持了良好的磁性能;锶铁氧体的负载拓宽了催化剂的光响应区域,光吸收带进入可见光区;在负载量为20%,催化剂用量1.5g/L条件下,催化降解亚甲基兰的效率可达99.1%.

参考文献

[1] Serpone N.Solar Energy Mater Solar Cells,1995,38 (3):369-379.
[2] Sodergren S,Hagfeldt A,Olsson J,et al.Journal of Phys-ical Chemistry,1994,98 (21):5552-5556.
[3] Kang M,Hong W J,Park M S.Applied Catalysis B:En-vironmental,2004,53 (3):195-205.
[4] Li X S,Fryxell G E,Engelhard M H,et al.Inorganic Chemistry Communications,2007,10 (6):639-641.
[5] Bideau M,Claudel B,Dubien C,et al.Journal of Photo-Chemistry and Photobiology A:Chemistry,1995,91 (2):137-144.
[6] Mazzarino I,Piccinini P,Spinelli L.Catalysis Today,1999,48 (4):315-321.
[7] Beydoun D,Amal R.Materials Science and Engineering,2002,94 (1):71-81.
[8] Watson S,Beydoun D,Amal R.Journal of Photochem-istry and Photobiology,2002,148 (3):303-313.
[9] Fu W Y,Yang H B,Li M H,et al.Materials Letters,2005,59 (27):3530-3534.
[10] Beydoun D,Areal R,Low G,et al.Journal of Molecular Catalysis A:Chemical,2002,180 (2):193-200.
[11] Rana S,Srivastava R S,Sorensson M M,et al.Materials Science and Engineering,2005,119 (2):144-151.
[12] Xu S H,Shangguan W F,Yuan J,et al.Science and Technology of Advanced Materials,2007,8 (1-2):40-46.
[13] Cheng P,Li W,Zhou T L,et al.Journal of Photochem-istry and Photobiology A:Chemistry,2004,168 (1-2):97-101.
[14] Yuan Z H,You W,Jia J H,et al.Chinese Physics Letters,1998,15 (7):535-536.
[15] Liu J J,Lu G X,He H L,et al.Mater.Res.Bull.,1996,31(9):1049-1056.
[16] 袁志好,孙永昌,王玉红,等.高等学校化学学报,2004,25(10):1875-1878.
[17] 廖振华,陈建军,姚可大,等(LIAO Zhen-Hun,et al).无机材料学报(Journal of Inorganic Materials),2004,19(4):749-754.
[18] 尹京花,赵莲花,武伦鹏,等.分子催化,2006,20(6):569-573.
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