Methane to methanol over copper mordenite: yield improvement through multiple cycles and different synthesis techniques
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Title
Methane to methanol over copper mordenite: yield improvement through multiple cycles and different synthesis techniques
Authors
Keywords
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Journal
Catalysis Science & Technology
Volume 6, Issue 13, Pages 5011-5022
Publisher
Royal Society of Chemistry (RSC)
Online
2016-03-08
DOI
10.1039/c6cy00041j
References
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Related references
Note: Only part of the references are listed.- Conversion of methane to methanol on copper-containing small-pore zeolites and zeotypes
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- Bis(μ-oxo) versus mono(μ-oxo)dicopper cores in a zeolite for converting methane to methanol: an in situ XAS and DFT investigation
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- Single-site trinuclear copper oxygen clusters in mordenite for selective conversion of methane to methanol
- (2015) Sebastian Grundner et al. Nature Communications
- A low temperature, isothermal gas-phase system for conversion of methane to methanol over Cu–ZSM-5
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- Spectroscopy and Redox Chemistry of Copper in Mordenite
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- Reaction Conditions of Methane-to-Methanol Conversion Affect the Structure of Active Copper Sites
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- Determination of the electronic and geometric structure of Cu sites during methane conversion over Cu-MOR with X-ray absorption spectroscopy
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- Catalytic conversion of methane to methanol over Cu–mordenite
- (2011) Evalyn Mae Alayon et al. CHEMICAL COMMUNICATIONS
- Cu-ZSM-5: A biomimetic inorganic model for methane oxidation
- (2011) Pieter Vanelderen et al. JOURNAL OF CATALYSIS
- Room-Temperature Oxidation of Methane by α-Oxygen and Extraction of Products from the FeZSM-5 Surface
- (2011) Eugeny V. Starokon et al. Journal of Physical Chemistry C
- Cu-ZSM-5 Zeolites for the Formation of Methanol from Methane and Oxygen: Probing the Active Sites and Spectator Species
- (2010) Nadzeya V. Beznis et al. CATALYSIS LETTERS
- Oxidation of methane to methanol and formaldehyde over Co–ZSM-5 molecular sieves: Tuning the reactivity and selectivity by alkaline and acid treatments of the zeolite ZSM-5 agglomerates
- (2010) Nadzeya V. Beznis et al. MICROPOROUS AND MESOPOROUS MATERIALS
- Oxidation of methane by a biological dicopper centre
- (2010) Ramakrishnan Balasubramanian et al. NATURE
- Potential for C−H Activation in CH4 Utilizing a CuMFI-Type Zeolite as a Catalyst
- (2009) Atsushi Itadani et al. Journal of Physical Chemistry C
- Product Protection, the Key to Developing High Performance Methane Selective Oxidation Catalysts
- (2009) Mårten Ahlquist et al. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
- A [Cu2O]2+core in Cu-ZSM-5, the active site in the oxidation of methane to methanol
- (2009) Julia S. Woertink et al. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
- Effects of ZSM-5 Zeolite Confinement on Reaction Intermediates during Dioxygen Activation by Enclosed Dicopper Cations
- (2008) Takashi Yumura et al. INORGANIC CHEMISTRY
- Biologically inspired oxidation catalysis
- (2008) Lawrence Que et al. NATURE
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