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以聚苯乙烯微球离心后形成的三维规则排列的胶晶作模板,用钛酸丁酯和正硅酸乙酯分别和水、乙醇等配制成的混合溶胶填充微球之间的间隙,然后原位形成凝胶,最后通过焙烧(<5℃/min;300℃,5h;570℃,5~10h,空气流速1L/min)除去微球得到三维规则排列的大孔钛硅混合氧化物.样品表面可观察到五颜六色的彩光.样品的SEM图表明,球形孔大小均匀,排列整齐,孔壁填充完全.孔径在500nm左右,孔的排列呈面心立方结构,孔与孔之间由小孔窗相互交连.较高的溶胶浓度有利于溶胶的填充,容易形成孔壁较厚的坚固的三维骨架.低浓度得到的样品孔壁薄,缺陷多,易脆裂.样品的EDS表明Si/Ti的摩尔比为2.7,XRD研究表明孔壁具有无定形的结构.

Three-Dimentionally Ordered macroporous titanium-silica mixed oxides were successfully synthesized
by using polystyren sphere colloid crystal as the template and the sol of tetraethyl silicate and tetrabutoxy-titane as the filling fluid. The sol filled in the voids among
spheres by capillary forces, and then transformed into gel in situ. Latex spheres were removed by calcination(<5℃/min; 300℃,5h; 570℃, 5h). The macroporous samples show
a beautiful iridescence in reflected light. SEM indicates that the pores are about 500nm in size and arrayed periodically in a face-centered cubic
(fcc) structure and connected with each other by small windows. EDS indicates that the Si/Ti molar ratio is 2.7. XRD indicates the wall of the
pores is amorphous.

参考文献

[1] Stein A. Microporous and Mesoporous Materials, 2001, 44-45: 227--239.
[2] Velev O D, Jede T A , Lobo R F, et al. Nature, 1997, 389: 447--448.
[3] Holland B T, Blandford C F, Stein A. Chem Mater., 1999, 11 (3): 795--805.
[4] Yan H W, Blandford C F, Holland B T, et al. Chem Mater, 2000, 12 (4): 1134--1141.
[5] 杨振忠, 齐~~凯, 容速华, 等. 科学通报(Chin Sci Bul), 2001, 46 (16): 1349--1353.
[6] 张义华, 王祥生, 郭新闻. 化学进展(Progress in Chemistry), 2001, 13 (1): 19--24.
[7] Vos W L, Megens M, Van Kats C M, et al. Langmuir, 1997, 13 (23): 6004--6008.
[8] Furusawa K, Tomotsu N. J Colloid Interface Sci, 1983, 93 (2): 504--512.
[9] Woodcock L V. Nature, 1997, 385: 141--143.
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