Infrared Spectroscopic Characterization of CIT-6 and a Family of *BEA Zeolites

S. Tomlinson, Tyler McGown, J. Schlup, J. Anthony
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引用次数: 6

Abstract

Infrared spectroscopy is known to be a useful tool for identifying local structure changes in zeolites. Infrared spectroscopy is often employed to complement X-ray diffraction data. Local structure changes in zeolite CIT-6 and its zeolite beta (*BEA) analogs caused by calcination, altering framework composition, and ion exchange have been identified with mid- and far-infrared spectroscopy. Differences in the local structures of the samples were observed in mid- and far-infrared spectra, including changes in the intratetrahedral asymmetric stretch, the double-ring mode, and the intratetrahedral bending mode regions. The infrared spectra indicate that calcination or acetic acid extraction changed the structure of CIT-6 to that of zeolite beta (*BEA). Zinc ion exchange or the substitution of aluminum into the framework structure of acetic acid extracted samples retained the CIT-6 structure.
CIT-6和一类*BEA沸石的红外光谱表征
众所周知,红外光谱是识别沸石局部结构变化的有用工具。红外光谱学常被用来补充x射线衍射数据。利用中、远红外光谱技术鉴定了CIT-6分子筛及其沸石β (*BEA)类似物在煅烧、框架组成改变和离子交换作用下的局部结构变化。在中、远红外光谱中观察到样品局部结构的差异,包括四面体内不对称拉伸、双环模式和四面体内弯曲模式区域的变化。红外光谱分析表明,煅烧或醋酸萃取使CIT-6的结构转变为沸石(*BEA)的结构。锌离子交换或铝取代成框架结构后,乙酸提取的样品保留了CIT-6结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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