沸石
吸附
化学吸附
化学
分子
漫反射红外傅里叶变换
分子筛
物理化学
催化作用
光化学
有机化学
光催化
作者
Guangchao Li,Tatchamapan Yoskamtorn,Wei Chen,Christopher Foo,Jianwei Zheng,Chiu C. Tang,Sarah J. Day,Anmin Zheng,Molly Meng‐Jung Li,Shik Chi Edman Tsang
标识
DOI:10.1002/anie.202204500
摘要
Zeolites have found tremendous applications in the chemical industry. However, the dynamic nature of their active sites under the flow of adsorbate molecules for adsorption and catalysis is unclear, especially in operando conditions, which could be different from the as-synthesized structures. In the present study, we report a structural transformation of the adsorptive active sites in SAPO-34 zeolite by using acetone as a probe molecule under various temperatures. The combination of solid-state nuclear magnetic resonance, in situ variable-temperature synchrotron X-ray diffraction, and in situ diffuse-reflectance infrared Fourier-transform spectroscopy allow a clear identification and quantification that the chemisorption of acetone can convert the classical Brønsted acid site adsorption mode to an induced Frustrated Lewis Pairs adsorption mode at increasing temperatures. Such facile conversion is also supported by the calculations of ab-initio molecular-dynamics simulations. This work sheds new light on the importance of the dynamic structural alteration of active sites in zeolites with adsorbates at elevated temperatures.
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