沸石
甲醇
ZSM-5型
核磁共振波谱
化学
光谱学
固态
固态核磁共振
物理化学
催化作用
有机化学
核磁共振
物理
量子力学
作者
Chao Wang,Qiang Wang,Jun Xu,Guodong Qi,Pan Gao,Weiyu Wang,Yunyun Zou,Ningdong Feng,Xiaolong Liu,Feng Deng
标识
DOI:10.1002/anie.201510920
摘要
Abstract Hydrocarbon‐pool chemistry is important in methanol to olefins (MTO) conversion on acidic zeolite catalysts. The hydrocarbon‐pool (HP) species, such as methylbenzenes and cyclic carbocations, confined in zeolite channels during the reaction are essential in determining the reaction pathway. Herein, we experimentally demonstrate the formation of supramolecular reaction centers composed of organic hydrocarbon species and the inorganic zeolite framework in H‐ZSM‐5 zeolite by advanced 13 C– 27 Al double‐resonance solid‐state NMR spectroscopy. Methylbenzenes and cyclic carbocations located near Brønsted acid/base sites form the supramolecular reaction centers in the zeolite channel. The internuclear spatial interaction/proximity between the 13 C nuclei (associated with HP species) and the 27 Al nuclei (associated with Brønsted acid/base sites) determines the reactivity of the HP species. The closer the HP species are to the zeolite framework Al, the higher their reactivity in the MTO reaction.
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