College of Chemistry and State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, Jilin University, Changchun 130023, PR China.
Chemistry. 2011 May 23;17(22):6162-9. doi: 10.1002/chem.201100098. Epub 2011 Apr 13.
UV-Raman and NMR spectroscopy, combined with other techniques, have been used to characterize crystallization of zeolite A. In situ UV-Raman spectroscopy shows that the starting gel for crystallization of zeolite A contains a lot of four-ring (4R) building units and the appearance of six-ring (6R) building blocks is the signal for crystal formation. (29)Si NMR spectroscopy results suggest that the starting gel is double four-ring (D4R) rich and during crystallization of zeolite A both α and β cages appear. (27)Al NMR spectroscopy results indicate the absence of Al (2Si) species in the starting gel, suggesting the absence of single 4R building units in the starting gel. Furthermore, composition analysis of both solid and liquid samples shows that the solid rather than liquid phase predominates for the crystallization of zeolite A. Therefore, it is proposed that the crystallization of zeolite A mainly occurs in the solid phase by self-assembly or rearrangement starting from the zeolite building units mainly consisting of D4R. The essential role of D4R is directly confirmed by successful conversion from a solution of D4R to zeolite A in the presence of NaCl, and the importance of solid phase is reasonably demonstrated by the successful synthesis of zeolite A from a dry aluminosilicate gel. By considering that the solid phase has a major contribution to crystallization, a novel route was designed to synthesizing zeolite A from the raw materials water glass (Na(2)SiO(3) in aqueous solution) and NaAlO(2), without additional water and NaOH; this route not only simplifies synthetic procedures, but reduces water consumption.
UV-Raman 和 NMR 光谱学与其他技术结合使用,已被用于表征沸石 A 的结晶。原位 UV-Raman 光谱表明,用于沸石 A 结晶的起始凝胶含有大量的四环(4R)结构单元,六环(6R)结构单元的出现是晶体形成的信号。(29)Si NMR 光谱结果表明,起始凝胶是双四环(D4R)丰富的,并且在沸石 A 的结晶过程中,α 和β笼都会出现。(27)Al NMR 光谱结果表明,起始凝胶中不存在 Al(2Si)物种,这表明起始凝胶中不存在单个 4R 结构单元。此外,固液样品的组成分析表明,在沸石 A 的结晶过程中,固相而不是液相占主导地位。因此,提出沸石 A 的结晶主要通过自组装或重新排列从主要由 D4R 组成的沸石结构单元在固相中进行。D4R 的基本作用通过在 NaCl 存在下成功地将 D4R 溶液转化为沸石 A 直接得到证实,而固相的重要性通过从干燥的硅铝酸盐凝胶中成功合成沸石 A 得到合理证明。考虑到固相对结晶有主要贡献,设计了一条从水玻璃(水溶液中的 Na(2)SiO(3))和 NaAlO(2)等原料合成沸石 A 的新路线,无需额外的水和 NaOH;这条路线不仅简化了合成步骤,还减少了用水量。