Au-ZSM-5 catalyses the selective oxidation of CH4 to CH3OH and CH3COOH using O-2
10.1038/s41929-021-00725-8
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2022
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sg-nus-scholar.10635-2163762024-04-17T02:42:41Z Au-ZSM-5 catalyses the selective oxidation of CH4 to CH3OH and CH3COOH using O-2 Qi, Guodong Davies, Thomas E Nasrallah, Ali Sainna, Mala A Howe, Alexander GR Lewis, Richard J Quesne, Matthew Catlow, C Richard A Willock, David J He, Qian Bethell, Donald Howard, Mark J Murrer, Barry A Harrison, Brian Kiely, Christopher J Zhao, Xingling Deng, Feng Xu, Jun Hutchings, Graham J MATERIALS SCIENCE AND ENGINEERING Science & Technology Physical Sciences Chemistry, Physical Chemistry EXCHANGED ZEOLITES ACETIC-ACID METHANE TEMPERATURE CONVERSION MORDENITE OXYGEN OXIDE GOLD 10.1038/s41929-021-00725-8 NATURE CATALYSIS 5 1 45-54 2022-02-28T03:59:56Z 2022-02-28T03:59:56Z 2022-01-06 2022-02-28T01:35:26Z Article Qi, Guodong, Davies, Thomas E, Nasrallah, Ali, Sainna, Mala A, Howe, Alexander GR, Lewis, Richard J, Quesne, Matthew, Catlow, C Richard A, Willock, David J, He, Qian, Bethell, Donald, Howard, Mark J, Murrer, Barry A, Harrison, Brian, Kiely, Christopher J, Zhao, Xingling, Deng, Feng, Xu, Jun, Hutchings, Graham J (2022-01-06). Au-ZSM-5 catalyses the selective oxidation of CH4 to CH3OH and CH3COOH using O-2. NATURE CATALYSIS 5 (1) : 45-54. ScholarBank@NUS Repository. https://doi.org/10.1038/s41929-021-00725-8 25201158 https://scholarbank.nus.edu.sg/handle/10635/216376 en NATURE PORTFOLIO Elements |
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Science & Technology Physical Sciences Chemistry, Physical Chemistry EXCHANGED ZEOLITES ACETIC-ACID METHANE TEMPERATURE CONVERSION MORDENITE OXYGEN OXIDE GOLD |
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Science & Technology Physical Sciences Chemistry, Physical Chemistry EXCHANGED ZEOLITES ACETIC-ACID METHANE TEMPERATURE CONVERSION MORDENITE OXYGEN OXIDE GOLD Qi, Guodong Davies, Thomas E Nasrallah, Ali Sainna, Mala A Howe, Alexander GR Lewis, Richard J Quesne, Matthew Catlow, C Richard A Willock, David J He, Qian Bethell, Donald Howard, Mark J Murrer, Barry A Harrison, Brian Kiely, Christopher J Zhao, Xingling Deng, Feng Xu, Jun Hutchings, Graham J Au-ZSM-5 catalyses the selective oxidation of CH4 to CH3OH and CH3COOH using O-2 |
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10.1038/s41929-021-00725-8 |
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MATERIALS SCIENCE AND ENGINEERING |
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MATERIALS SCIENCE AND ENGINEERING Qi, Guodong Davies, Thomas E Nasrallah, Ali Sainna, Mala A Howe, Alexander GR Lewis, Richard J Quesne, Matthew Catlow, C Richard A Willock, David J He, Qian Bethell, Donald Howard, Mark J Murrer, Barry A Harrison, Brian Kiely, Christopher J Zhao, Xingling Deng, Feng Xu, Jun Hutchings, Graham J |
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Article |
author |
Qi, Guodong Davies, Thomas E Nasrallah, Ali Sainna, Mala A Howe, Alexander GR Lewis, Richard J Quesne, Matthew Catlow, C Richard A Willock, David J He, Qian Bethell, Donald Howard, Mark J Murrer, Barry A Harrison, Brian Kiely, Christopher J Zhao, Xingling Deng, Feng Xu, Jun Hutchings, Graham J |
author_sort |
Qi, Guodong |
title |
Au-ZSM-5 catalyses the selective oxidation of CH4 to CH3OH and CH3COOH using O-2 |
title_short |
Au-ZSM-5 catalyses the selective oxidation of CH4 to CH3OH and CH3COOH using O-2 |
title_full |
Au-ZSM-5 catalyses the selective oxidation of CH4 to CH3OH and CH3COOH using O-2 |
title_fullStr |
Au-ZSM-5 catalyses the selective oxidation of CH4 to CH3OH and CH3COOH using O-2 |
title_full_unstemmed |
Au-ZSM-5 catalyses the selective oxidation of CH4 to CH3OH and CH3COOH using O-2 |
title_sort |
au-zsm-5 catalyses the selective oxidation of ch4 to ch3oh and ch3cooh using o-2 |
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NATURE PORTFOLIO |
publishDate |
2022 |
url |
https://scholarbank.nus.edu.sg/handle/10635/216376 |
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1800915341520404480 |