2020
DOI: 10.1126/science.aba5005
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Water-promoted interfacial pathways in methane oxidation to methanol on a CeO 2 -Cu 2 O catalyst

Abstract: Highly selective oxidation of methane to methanol has long been challenging in catalysis. Here, we reveal key steps for the pro­motion of this reaction by water when tuning the selectivity of a well-defined CeO2/Cu2O/Cu(111) catalyst from carbon monoxide and carbon dioxide to methanol under a reaction environment with methane, oxygen, and water. Ambient-pressure x-ray photoelectron spectroscopy showed that water added to methane and oxygen led to surface methoxy groups and accelerated methanol production. Thes… Show more

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Cited by 220 publications
(282 citation statements)
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“…To further identify how P-OH ensembles participated in the reaction, we combined temperature-programmed surface reaction with mass spectroscopy (TPSR-MS) using an isotope label. Especially, we used 18 ( 32 O 2 ) to pre-treat the catalyst in the dark or under light irradiation. TPSR-MS measurements were operated in the dark under CH 4 when the temperature rose from 50 to 300°C.…”
Section: Resultsmentioning
confidence: 99%
See 4 more Smart Citations
“…To further identify how P-OH ensembles participated in the reaction, we combined temperature-programmed surface reaction with mass spectroscopy (TPSR-MS) using an isotope label. Especially, we used 18 ( 32 O 2 ) to pre-treat the catalyst in the dark or under light irradiation. TPSR-MS measurements were operated in the dark under CH 4 when the temperature rose from 50 to 300°C.…”
Section: Resultsmentioning
confidence: 99%
“…26a, b). With regard to pre-treatment under light irradiation, four types of products were detected, including CH 3 18 OH, CH 3 16 OH, H 2 18 O, and H 2 16 O ( Supplementary Fig. 26c).…”
Section: Resultsmentioning
confidence: 99%
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