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Correlating synthetic methods, morphology, atomic-level structure, and catalytic activity of Sn-beta catalysts
- Source :
- ACS Catalysis, ACS Catalysis, 2016, 6 (7), pp.4047-4063. ⟨10.1021/acscatal.6b00114⟩, ACS Catalysis, American Chemical Society, 2016, 6 (7), pp.4047-4063. ⟨10.1021/acscatal.6b00114⟩
- Publication Year :
- 2016
- Publisher :
- HAL CCSD, 2016.
-
Abstract
- Dr. Frank Krumeich is gratefully thanked for the SEM-EDX measurements. We also thank Dr. Ta-Chung Ong and Wei-Chih Liao for their help with some of the DNP-NMR experiments.; International audience; Sn-beta zeolites prepared using different recipes feature very different catalytic activities for aqueous phase glucose isomerization, suggesting the presence of different active sites. A systematic study of the morphology and atomic-level structure of the materials using DNP NMR spectroscopy in combination with first-principles calculations allows for the discrimination between potential sites and leads to a proposal of specific structural features that are important for high activity. The results indicate that the materials showing the highest activity possess a highly hydrophobic, defect-free zeolite framework. Those materials show so-called closed and associated partially hydrolyzed Sn(IV) sites in the T6 and T5/T7 lattice positions. On the other hand, postsynthetically synthesized Sn-beta samples prepared in two steps via dealumination and subsequent solid-state ion exchange from Al-beta show significantly lower activity, which is associated with a hydrophilic framework and/or a lower accessibility and different lattice position of the Sn sites in the zeolite crystal. Further, we provide a method to distinguish between different Sn sites on the basis of NMR cartography using chemical shift and chemical shift anisotropy as readily measurable parameters. This cartography allows identifying not only the nature of the active sites (closed, defect-open, and hydrolyzed-open) but also their position within the BEA framework.
- Subjects :
- BAEYER-VILLIGER OXIDATIONS
010402 general chemistry
01 natural sciences
Catalysis
EFFECTIVE CORE POTENTIALS
Sn-beta zeolites
DENSITY-FUNCTIONAL THEORY
Hydrolysis
[CHIM.ANAL]Chemical Sciences/Analytical chemistry
Sn-119 solid-state NMR
Organic chemistry
Zeolite
LEWIS-ACID SITES
ENHANCED NMR-SPECTROSCOPY
Ion exchange
010405 organic chemistry
Chemistry
ab initio calculations
stannosilicates
Aqueous two-phase system
General Chemistry
Nuclear magnetic resonance spectroscopy
[CHIM.CATA]Chemical Sciences/Catalysis
GLUCOSE ISOMERIZATION
DNP SENS
ORDER REGULAR APPROXIMATION
0104 chemical sciences
[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistry
Crystallography
MEERWEIN-PONNDORF-VERLEY
ANGLE-SPINNING NMR
Density functional theory
DYNAMIC NUCLEAR-POLARIZATION
Isomerization
Subjects
Details
- Language :
- English
- ISSN :
- 21555435
- Database :
- OpenAIRE
- Journal :
- ACS Catalysis, ACS Catalysis, 2016, 6 (7), pp.4047-4063. ⟨10.1021/acscatal.6b00114⟩, ACS Catalysis, American Chemical Society, 2016, 6 (7), pp.4047-4063. ⟨10.1021/acscatal.6b00114⟩
- Accession number :
- edsair.doi.dedup.....b7df38d431ce388d0fb2665a758b5d8d
- Full Text :
- https://doi.org/10.1021/acscatal.6b00114⟩