成核
沸石
Crystal(编程语言)
热液循环
无定形固体
晶体生长
化学工程
扩散
材料科学
混合(物理)
纳米晶
动力学
化学
矿物学
结晶学
纳米技术
热力学
有机化学
催化作用
量子力学
计算机科学
程序设计语言
物理
工程类
作者
Lama Itani,Krassimir N. Bozhilov,Guillaume Clet,L. Delmotte,Valentin Valtchev
标识
DOI:10.1002/chem.201002622
摘要
Abstract Time‐series hydrothermal syntheses from two organic‐cation‐free gels with different compositions were employed to study the factors that control the final size of zeolite L crystals. The first gel had a starting K/Al ratio of 10, whereas in the second one it was three times lower. The relatively simple chemical composition of the starting gels and the combination of complementary characterization methods allowed us to track down the different stages of transformation of the initial amorphous gels into zeolite crystals and the factors that control the nucleation and growth processes. The role of the starting mixture components in the formation of the primary amorphous particles was explored. It was found that the profoundly different reaction kinetics in the two systems are caused by the difference in diffusion rates, which in turn are controlled by the extent of the polymerization reactions at room temperature during mixing of the starting components prior to hydrothermal treatment. As a consequence, nucleation is fast and ubiquitous in the first system with higher water content and K/Al ratio, whereas it is slow and sporadic in the second system with lower water content and K/Al ratio. Ultimately, these differences in the kinetics lead to the formation of two distinctly different patterns of crystal‐size distribution, with a large number of small nanocrystals in the first sample and fewer large crystals in the second sample. The new findings put zeolite crystal growth on a rational basis that would enable the control of zeolite crystal size in similar organic‐template‐free systems.
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