Two distinct [Cu–O–Cu]<sup>2+</sup> sites with methane monooxygenase activity are identified in the zeolite Cu-MOR, emphasizing that this Cu–O–Cu active site geometry, having a ∠Cu–O–Cu ∼140°, is particularly formed and stabilized in zeolite topologies. Whereas in ZSM-5 a similar [Cu–O–Cu]<sup>2+</sup> active site is located in the intersection of the two 10 membered rings, Cu-MOR provides two distinct local structures, situated in the 8 membered ring windows of the side pockets. Despite their structural similarity, as ascertained by electronic absorption and resonance Raman spectroscopy, the two Cu–O–Cu active sites in Cu-MOR clearly show different kinetic behaviors in selective methane oxidation. This difference in reactivity is too large...
Cu-exchanged aluminosilicate zeolites have been intensively studied for the selective oxidation of m...
Cu-exchanged zeolites are known to be active in the selective oxidation of methane to methanol at mo...
The utilization of low-cost and abundant oxygen (O<sub>2</sub>) as an oxidant in the activation of c...
Two distinct [Cu-O-Cu](2+) sites with methane monooxygenase activity are identified in the zeolite C...
Two distinct [Cu-O-Cu]^(2+) sites with methane monooxygenase activity are identified in the zeolite ...
The industrial implementation of a direct methane-to-methanol process would lead to environmental an...
In the pursuit of controlling the propensity of Cu-mordenite (MOR) for the selective oxidation of CH...
The Cu^(2+)-O-Cu^(2+) core in ZSM-5 zeolite is, thus far, the only well-characterized copper interme...
Identifying Cu-exchanged zeolites able to activate C-H bonds and selectively convert methane to meth...
Cu-exchanged zeolites are known to be active in the selective oxidation of methane to methanol at mo...
Copper-containing zeolites, such as mordenite (MOR), have recently gained increased attention as a c...
Identifying Cu-exchanged zeolites able to activate C-H bonds and selectively convert methane to meth...
\u3cp\u3eIdentifying Cu-exchanged zeolites able to activate C-H bonds and selectively convert methan...
A periodic density functional theory study complemented by ab initio thermodynamic analysis was carr...
Copper-exchanged zeolites are promising catalysts for the direct methane-to-methanol reaction, but t...
Cu-exchanged aluminosilicate zeolites have been intensively studied for the selective oxidation of m...
Cu-exchanged zeolites are known to be active in the selective oxidation of methane to methanol at mo...
The utilization of low-cost and abundant oxygen (O<sub>2</sub>) as an oxidant in the activation of c...
Two distinct [Cu-O-Cu](2+) sites with methane monooxygenase activity are identified in the zeolite C...
Two distinct [Cu-O-Cu]^(2+) sites with methane monooxygenase activity are identified in the zeolite ...
The industrial implementation of a direct methane-to-methanol process would lead to environmental an...
In the pursuit of controlling the propensity of Cu-mordenite (MOR) for the selective oxidation of CH...
The Cu^(2+)-O-Cu^(2+) core in ZSM-5 zeolite is, thus far, the only well-characterized copper interme...
Identifying Cu-exchanged zeolites able to activate C-H bonds and selectively convert methane to meth...
Cu-exchanged zeolites are known to be active in the selective oxidation of methane to methanol at mo...
Copper-containing zeolites, such as mordenite (MOR), have recently gained increased attention as a c...
Identifying Cu-exchanged zeolites able to activate C-H bonds and selectively convert methane to meth...
\u3cp\u3eIdentifying Cu-exchanged zeolites able to activate C-H bonds and selectively convert methan...
A periodic density functional theory study complemented by ab initio thermodynamic analysis was carr...
Copper-exchanged zeolites are promising catalysts for the direct methane-to-methanol reaction, but t...
Cu-exchanged aluminosilicate zeolites have been intensively studied for the selective oxidation of m...
Cu-exchanged zeolites are known to be active in the selective oxidation of methane to methanol at mo...
The utilization of low-cost and abundant oxygen (O<sub>2</sub>) as an oxidant in the activation of c...