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轻质烷烃在阳离子八面沸石中吸附络合物的键合与几何结构的相互作用。光谱与计算联合研究。

Interplay of bonding and geometry of the adsorption complexes of light alkanes within cationic faujasites. Combined spectroscopic and computational study.

作者信息

Pidko Evgeny A, Xu Jiang, Mojet Barbara L, Lefferts Leon, Subbotina Irina R, Kazansky Vladimir B, van Santen Rutger A

机构信息

Schuit Institute of Catalysis, Eindhoven University of Technology, P.O. Box 513, NL-5600 MB Eindhoven, The Netherlands.

出版信息

J Phys Chem B. 2006 Nov 16;110(45):22618-27. doi: 10.1021/jp0634757.

Abstract

A FT-IR spectroscopic study of methane, ethane, and propane adsorption on magnesium and calcium forms of zeolite Y reveals different vibrational properties of the adsorbed molecules depending on the exchanged cation. This is attributed to different adsorption conformations of the hydrocarbons. Two-fold eta(2) coordination of light alkanes is realized for MgY, whereas in case of CaY zeolite quite different adsorption modes are found, involving more C-H bonds in the interaction with the cation. The topological analysis of the electron density distribution function of the adsorption complexes shows that when a hydrocarbon coordinates to the exchanged Mg(2+) ions, van der Waals bonds between H atoms of the alkane and basic zeolitic oxygens significantly contribute to the overall adsorption energy, whereas in case of CaY zeolite such interactions play only an indirect role. It is found that, due to the much smaller ionic radius of the Mg(2+) ion as compared to that of Ca(2+), the former ions are significantly shielded with the surrounding oxygens of the zeolitic cation site. This results in a small electrostatic contribution to the stabilization of the adsorbed molecules. In contrast, for CaY zeolite the stabilization of alkanes in the electrostatic field of the partially shielded Ca(2+) cation significantly contributes to the adsorption energy. This is in agreement with the experimentally observed lower overall absorption of C-H stretching vibrations of alkanes loaded to MgY as compared to those for CaY zeolite. The preferred conformation of the adsorbed alkanes is controlled by the bonding within the adsorption complexes that, in turn, strongly depends on the size and location of the cations in the zeolite cavity.

摘要

一项关于甲烷、乙烷和丙烷在镁型和钙型Y沸石上吸附的傅里叶变换红外光谱研究表明,根据交换的阳离子不同,吸附分子具有不同的振动特性。这归因于烃类的不同吸附构象。对于MgY,轻质烷烃实现了双η(2)配位,而在CaY沸石的情况下,发现了截然不同的吸附模式,在与阳离子的相互作用中涉及更多的C-H键。吸附配合物电子密度分布函数的拓扑分析表明,当烃与交换的Mg(2+)离子配位时,烷烃的H原子与沸石碱性氧之间的范德华键对整体吸附能量有显著贡献,而在CaY沸石的情况下,这种相互作用仅起间接作用。研究发现,由于Mg(2+)离子的离子半径比Ca(2+)小得多,前者离子被沸石阳离子位点周围的氧显著屏蔽。这导致对吸附分子稳定化的静电贡献较小。相比之下,对于CaY沸石,在部分屏蔽的Ca(2+)阳离子静电场中烷烃的稳定化对吸附能量有显著贡献。这与实验观察到的结果一致,即与CaY沸石相比,负载到MgY上的烷烃C-H伸缩振动的总体吸收较低。吸附烷烃的优选构象由吸附配合物内的键合控制,而键合又强烈取决于沸石腔内阳离子的大小和位置。

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