Laboratoire Catalyse & Spectrochimie, ENSICAEN - Université de Caen - CNRS, 6 boulevard du Maréchal Juin, 14050 Caen, France.
Nanoscale. 2015 Mar 19;7(13):5787-93. doi: 10.1039/c4nr07272c.
Control of the crystallite dimensions of the microporous aluminophosphate AlPO-41 (AFO-type framework structure), and the Si-containing analogue SAPO-41, was attained down to the nanometer scale under stable hydrothermal conditions. The combined application of a tetraalkylammonium co-template (tetrapentylammonium hydroxide) along with an amine structure directing agent (n-dipropylamine) stabilized through the use of ethanol in the initial suspension enables a crystallization medium, which remains homogeneous throughout the entire synthesis. As a direct consequence of the optimized homogeneity of the suspension, the AFO-type microporous nanocrystals (AlPO-41 and SAPO-41) with a size in the range of 30-500 nm with yields surpassing 50% are obtained. The feasibility to obtain nanosized AlPO-41 and SAPO-41 crystals using ethanol as a polarity equalizing agent, resulting in a scalable hydrothermal synthesis from non-colloidal starting mixtures without the use of other assisting methods, is presented.
在稳定的水热条件下,成功地将微孔磷酸铝 AlPO-41(AFO 型骨架结构)和含硅类似物 SAPO-41 的晶粒尺寸控制到纳米级。通过在初始悬浮液中使用乙醇,将四烷基铵共模板(四戊基氢氧化铵)与胺结构导向剂(正丙胺)结合使用,实现了整个合成过程中保持均匀的结晶介质。由于悬浮液的均匀性得到了优化,因此可以获得尺寸在 30-500nm 范围内、产率超过 50%的 AFO 型微孔纳米晶体(AlPO-41 和 SAPO-41)。本文提出了使用乙醇作为等极性剂来获得纳米尺寸的 AlPO-41 和 SAPO-41 晶体的可行性,该方法可以从非胶体起始混合物中进行可扩展的水热合成,而无需使用其他辅助方法。