Center for Engineered Polymeric Materials, Department of Chemistry, College of Staten Island and Graduate Center, City University of New York, 2800 Victory Boulevard, Staten Island, NY 10314, USA.
J Colloid Interface Sci. 2012 Jan 1;365(1):137-42. doi: 10.1016/j.jcis.2011.09.044. Epub 2011 Sep 24.
Ultra-large-pore FDU-12 (ULP-FDU-12) silica with face-centered cubic structure (Fm3m type) of spherical mesopores was synthesized using Pluronic F127 triblock copolymer (EO(106)PO(70)EO(106)) and ethylbenzene as a new micelle expander at initial temperature of 14 °C. Ethylbenzene was identified on the basis of its reported extent of solubilization in poly(ethylene oxide)-poly(propylene oxide)-type surfactant micelles, which was similar to that of xylene, the latter having been shown earlier to afford ULP-FDU-12. The unit-cell parameter of as-synthesized ULP-FDU-12 was 55 nm, which is similar to the highest value reported when xylenes (mixture of isomers) were used and larger than that achieved with trimethylbenzene. The unit-cell parameter of calcined ULP-FDU-12 reached 52 nm. For the obtained materials, the nominal pore cage diameter calculated from nitrogen adsorption reached 32 nm, whereas the actual pore cage diameter calculated using the geometrical relation was 36 nm. The pore entrance size was below 5 nm before the acid treatment, but was greatly enlarged as a result of the treatment. The sample prepared without hydrothermal treatment was converted to ordered closed-pore silica at as low as 400-450 °C. Our study confirms the ability to select micelle expanders on the basis of data on solubilization of compounds in micelle solutions.
采用 Pluronic F127 三嵌段共聚物(EO(106)PO(70)EO(106))和乙基苯作为新型胶束扩溶剂,在 14°C 的初始温度下合成具有面心立方结构(Fm3m 型)的球形介孔超大孔 FDU-12(ULP-FDU-12)硅。根据乙基苯在聚(氧化乙烯)-聚(氧化丙烯)型表面活性剂胶束中的溶解度报道,确定了乙基苯的存在,这与二甲苯相似,二甲苯之前已被证明可提供 ULP-FDU-12。合成的 ULP-FDU-12 的晶胞参数为 55nm,与使用二甲苯(异构体混合物)时报道的最高值相似,大于使用三甲苯时的值。煅烧的 ULP-FDU-12 的晶胞参数达到 52nm。对于所得材料,由氮气吸附计算得到的名义孔笼直径为 32nm,而使用几何关系计算得到的实际孔笼直径为 36nm。酸处理前,孔入口尺寸小于 5nm,但处理后大大增大。未经水热处理制备的样品在低至 400-450°C 时转化为有序闭孔硅。我们的研究证实了可以根据化合物在胶束溶液中的溶解数据选择胶束扩溶剂的能力。