International audienceThe one‐step selective oxidation of methanol to dimethoxymethane (DMM) was demonstrated over titania‐supported molybdenum oxide catalysts, containing different amounts of molybdenum and prepared using two different impregnation techniques, namely wet impregnation and incipient wetness impregnation. The corresponding catalysts exhibited both acidic and redox properties, which are necessary for the oxidation of methanol to formaldehyde with subsequent condensation of the latter with excess methanol to finally yield DMM. The formation of well‐dispersed polyoxomolybdate species on the catalyst surface was evidenced using IR‐Raman, X‐ray diffraction, and nitrogen physisorption. Varying the amount of these polyoxomolydate sp...
In industry, one of the main catalysts typically employed for the selective oxidation of methanol to...
The oxidation of methanol over highly dispersed vanadia supported on TiO2 (anatase) has been investi...
Methanol oxidation to formaldehyde is one of the most important industries in our lives; the reactio...
The one-step gas phase conversion of methanol to 1,1-dimethoxymethane (DMM) was studied over highly ...
Typescript (photocopy).The selective oxidation of methanol to formaldehyde over molybdenum-containin...
The role of Mo in the selective oxidation reaction is considered in some detail, focusing on the sel...
High surface area MoO(,3) prepared in a flame reactor has been studied in regards to the partial oxi...
XPS and IR spectroscopies were used to investigate the surface intermediates of dimethyl ether (DME)...
Iron molybdate catalysts are used for the selective oxidation of methanol to formaldehyde. In this p...
The partial oxidation of dimethylether (DME) to formaldehyde over supported MoOx and VOx catalysts w...
Dimethyl ether (DME) reacts to form formaldehyde with high selectivity at 500-600 K on MoOx-ZrO2 cat...
High surface area MoO(,3) and V(,2)O(,5) prepared by the flame method have been studied in regards t...
The oxidation of methanol over highly dispersed vanadia supported on TiO2 (anatase) has been investi...
The selective oxidation of dimethyl ether (CH3OCH3) to formaldehyde (HCHO) was carried out on MoOx s...
The adsorption and reaction of methanol with iron molybdate catalysts of widely varying Mo/Fe ratio ...
In industry, one of the main catalysts typically employed for the selective oxidation of methanol to...
The oxidation of methanol over highly dispersed vanadia supported on TiO2 (anatase) has been investi...
Methanol oxidation to formaldehyde is one of the most important industries in our lives; the reactio...
The one-step gas phase conversion of methanol to 1,1-dimethoxymethane (DMM) was studied over highly ...
Typescript (photocopy).The selective oxidation of methanol to formaldehyde over molybdenum-containin...
The role of Mo in the selective oxidation reaction is considered in some detail, focusing on the sel...
High surface area MoO(,3) prepared in a flame reactor has been studied in regards to the partial oxi...
XPS and IR spectroscopies were used to investigate the surface intermediates of dimethyl ether (DME)...
Iron molybdate catalysts are used for the selective oxidation of methanol to formaldehyde. In this p...
The partial oxidation of dimethylether (DME) to formaldehyde over supported MoOx and VOx catalysts w...
Dimethyl ether (DME) reacts to form formaldehyde with high selectivity at 500-600 K on MoOx-ZrO2 cat...
High surface area MoO(,3) and V(,2)O(,5) prepared by the flame method have been studied in regards t...
The oxidation of methanol over highly dispersed vanadia supported on TiO2 (anatase) has been investi...
The selective oxidation of dimethyl ether (CH3OCH3) to formaldehyde (HCHO) was carried out on MoOx s...
The adsorption and reaction of methanol with iron molybdate catalysts of widely varying Mo/Fe ratio ...
In industry, one of the main catalysts typically employed for the selective oxidation of methanol to...
The oxidation of methanol over highly dispersed vanadia supported on TiO2 (anatase) has been investi...
Methanol oxidation to formaldehyde is one of the most important industries in our lives; the reactio...