Recent experiments on the dehydrogenation-aromatization of methane (DHAM) to form benzene using a MoO3/HZSM-5 catalyst stimulated us to examine methane activation by the transition-metal oxide molecules, MOx (M = Cr, Mo, W; x = 1, 2, 3). The present studies use hybrid density functional theory (B3LYP). The reactivity trend is rationalized in terms of changes in the electrophilicity of MO,, the strength of the M-O pi bond, and the bonding properties of MQ(x) to methyl or hydrogen as M and x are varied, It is found that or-bond metathesis to the metal hydride product (H-MOx-1-OCH3) occurs preferentially over the high oxidation state form (MO3) of the heavier metals, as well as all chromium oxides (CrOx). Instead, oxidative addition of MOx lea...
The acid properties of Mo/HMCM-22 catalyst, which is the precursor form of the working catalyst for ...
none3noDensity Functional Theory, in its B3LYP formulation, was used to explore quantitative details...
In this work, we leverage advances in computational screening based on periodic density functional t...
Recent experiments on the dehydrogenation-aromatization of methane (DHAM) to form benzene using a Mo...
Methane is an abundant resource existing in the form of natural and shale gas, and molybdenum-based ...
The structure and density of Mo species in Mo/H-ZSM5 during catalytic CH4 reactions was investigated...
We report the first detailed density functional theory study on the mechanisms of initial propane ac...
Methane conversion offers hydrocarbon building blocks of high market value, which are easier to tran...
Methane dehydrogenation and C–C coupling reactions to form ethylene on two different carbide cluster...
Methane dehydroaromatization reaction at 700 °C over Mo/ZSM-5 involves numerous modifications of the...
Our country continues to demand clean renewable energy to meet the growing energy needs of our time....
In the present paper, we report the density functional theory studies on the structure of the molybd...
Heterogeneous oxidation of methane over various metal catalysts is of interest due to the applicatio...
In this work, we investigate the role of alkaline metal oxides (AMO) (MgO, CaO, and SrO) in activati...
Reaction paths underlying the catalytic oxidation of methane with H2O2 over an Fe containing MIL-53(...
The acid properties of Mo/HMCM-22 catalyst, which is the precursor form of the working catalyst for ...
none3noDensity Functional Theory, in its B3LYP formulation, was used to explore quantitative details...
In this work, we leverage advances in computational screening based on periodic density functional t...
Recent experiments on the dehydrogenation-aromatization of methane (DHAM) to form benzene using a Mo...
Methane is an abundant resource existing in the form of natural and shale gas, and molybdenum-based ...
The structure and density of Mo species in Mo/H-ZSM5 during catalytic CH4 reactions was investigated...
We report the first detailed density functional theory study on the mechanisms of initial propane ac...
Methane conversion offers hydrocarbon building blocks of high market value, which are easier to tran...
Methane dehydrogenation and C–C coupling reactions to form ethylene on two different carbide cluster...
Methane dehydroaromatization reaction at 700 °C over Mo/ZSM-5 involves numerous modifications of the...
Our country continues to demand clean renewable energy to meet the growing energy needs of our time....
In the present paper, we report the density functional theory studies on the structure of the molybd...
Heterogeneous oxidation of methane over various metal catalysts is of interest due to the applicatio...
In this work, we investigate the role of alkaline metal oxides (AMO) (MgO, CaO, and SrO) in activati...
Reaction paths underlying the catalytic oxidation of methane with H2O2 over an Fe containing MIL-53(...
The acid properties of Mo/HMCM-22 catalyst, which is the precursor form of the working catalyst for ...
none3noDensity Functional Theory, in its B3LYP formulation, was used to explore quantitative details...
In this work, we leverage advances in computational screening based on periodic density functional t...