沸石
微型多孔材料
水溶液
氟化铵
介孔材料
无机化学
傅里叶变换红外光谱
吸附
热重分析
溶解
氟化物
核化学
化学
催化作用
化学工程
物理化学
有机化学
工程类
作者
Viktoria Babić,Lingxue Tang,Zhengxing Qin,Leila Hafiz,Jean‐Pierre Gilson,Valentin Valtchev
标识
DOI:10.1002/admi.202000348
摘要
Abstract A commercial zeolite L is subjected to chemical etching with aqueous solutions of NH 4 F and NH 4 HF 2 to generate secondary porosity. The derived samples are characterized by X‐ray diffraction, N 2 adsorption, scanning, and transmission electron microscopy, 27 Al MAS NMR, thermogravimetric analysis, and their acid sites are quantified by FTIR spectroscopy of adsorbed basic probe molecules. The catalytic properties of the pristine and modified zeolites are evaluated in the dealkylation of 1,3,5‐triisopropylbenzene. Tuning the etching conditions allows to generate hierarchical zeolites without losing micropore volume. Furthermore, both fluoride etchants do not change the acid properties of the zeolite substantially, which is confirmed by chemical composition analysis (ICP‐OES) and by FTIR spectroscopy of pyridine. The dissolution rate of zeolite L is much faster with NH 4 HF 2 than NH 4 F. The set of experimental data shows that the 1 wt% NH 4 HF 2 solution is an efficient etchant able to generate mesopores without affecting the parent zeolite properties as lower amounts of fluoride source are required than with concentrated (20–40 wt%) NH 4 F solutions.
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