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Electrophoretic Crystallization of Ultrathin High-performance Metal-organic Framework Membranes
Published on: August 16, 2018
Paired Framework Charges Enable Cationic Ptδ+ Sites for Ultralow-Loading Propane Dehydrogenation
Kexin Wu1,2,3, Guodong Sun2,3,4,5, Cuncun Wu2,3
1International Campus of Tianjin University, Binhai New City, Fuzhou350207, China.
Abstract:
Propane dehydrogenation (PDH) requires platinum (Pt) sites that couple high intrinsic activity with propylene selectivity, yet most Pt-based strategies that enhance selectivity rely on electronically modified metallic Pt and can compromise intrinsic rates. This paper describes a discovery that atomically dispersed, cationic Ptδ+ sites can be anchored on zincosilicate *BEA (CIT-6) via ion exchange at framework-derived paired negative charge environments. Transient measurements, (in situ) spectroscopic studies, kinetic analysis, and density functional theory calculations collectively show that Ptδ+ exhibits higher dehydrogenation activity than metallic Pt0, consistent with enhanced C-H bond polarization and facilitated C-H cleavage on electron-deficient centers. As a result, a 0.01 wt. % Ptδ+/CIT-6 catalyst achieves PDH activity comparable to a commercial (mimic) PtSnK/Al2O3 catalyst while using ∼30-fold less Pt. The same design concept extends to zincosilicate CHA and MFI frameworks, establishing framework-anchored positively charged Ptδ+ species as an active motif for Pt-efficient PDH catalysis.
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