Competitive pathways of methane activation on Zn2+-modified ZSM-5 zeolite: H/D hydrogen exchange with Brønsted acid sites versus dissociative adsorption to form Zn-methyl species
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Title
Competitive pathways of methane activation on Zn2+-modified ZSM-5 zeolite: H/D hydrogen exchange with Brønsted acid sites versus dissociative adsorption to form Zn-methyl species
Authors
Keywords
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Journal
Catalysis Science & Technology
Volume 6, Issue 16, Pages 6381-6388
Publisher
Royal Society of Chemistry (RSC)
Online
2016-05-31
DOI
10.1039/c6cy00878j
References
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Related references
Note: Only part of the references are listed.- Quantum chemical ab initio prediction of proton exchange barriers between CH4 and different H-zeolites
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- (2012) Jun Xu et al. Chemical Science
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- (2011) Sami M. T. Almutairi et al. ACS Catalysis
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- Methane Activation over Zn-Modified MFI Zeolite: NMR Evidence for Zn−Methyl Surface Species Formation
- (2009) Yuriy G. Kolyagin et al. Journal of Physical Chemistry C
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- In situ high temperature MAS NMR study of the mechanisms of catalysis. Ethane aromatization on Zn-modified zeolite BEA
- (2009) Sergei S. Arzumanov et al. SOLID STATE NUCLEAR MAGNETIC RESONANCE
- Understanding Methane Aromatization on a Zn-Modified High-Silica Zeolite
- (2008) Mikhail V. Luzgin et al. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
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- Significant Influence of Zn on Activation of the C-H Bonds of Small Alkanes by Brønsted Acid Sites of Zeolite
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- (2007) A STEPANOV et al. JOURNAL OF CATALYSIS
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