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Titlebook: Solid-State NMR in Zeolite Catalysis; Jun Xu,Qiang Wang,Feng Deng Book 2019 Springer Nature Singapore Pte Ltd. 2019 Active Site.Guest-host

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https://doi.org/10.1007/978-981-13-6967-4Active Site; Guest-host Interaction; Heterogeneous Catalyst; Heterogeneous Catalytic Reactions; Solid-st
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0342-4901 of solid-state NMR in the characterization of heterogeneous Solid-State NMR Characterization of Heterogeneous Catalysts and Catalytic Reactions provides a comprehensive account of state-of-the-art solid-state NMR techniques and the application of these techniques in heterogeneous catalysts and relat
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Solid-State NMR Principles and Techniques,d spin aspects are presented, including magic-angle spinning (MAS), cross-polarization (CP), dipolar decoupling as well as dipolar recoupling methods. One- (1D) and two-dimensional (2D) homo- and heteronuclear correlation MAS NMR experiments are also discussed here. Particularly, we provide a snapsh
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Solid-State NMR Characterization of Framework Structure of Zeolites and Zeotype Materials,ganic crystallites containing pores and cavities of molecular dimensions with well-defined structures. The framework of zeolite is composed of tetrahedra (TO., T = Si, Al, B, P, etc.), which can be comprehensively characterized by the well-established and robust solid-state NMR techniques. Chemical 
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,Solid-State NMR Characterization of Host-Guest Interactions,ctions between adsorbed molecules and active sites strongly influence the performances (activity and selectivity) of solid catalysts because they play essential roles in adsorption, desorption, and catalytic reaction process. Solid-state NMR provides a versatile approach for exploring the host-guest
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In Situ Solid-State NMR Investigation of Catalytic Reactions on Zeolites,ndamental knowledge about the reaction mechanisms. This chapter deals with the development and application of in situ solid-state NMR in the investigation of reactions catalyzed by zeolites. The state of the art of the in situ MAS NMR approaches that are performed at either bath or flow conditions w
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