The effects of RuOx structure on the selective oxidation of methanol to methyl formate (MF) at low temperatures were examined on ZrO2-supported RuOx catalysts with a range of Ru surface densities (0.2-3.8 Ru/nm(2)). Their structure was characterized using complementary methods (X-ray diffraction, Raman and X-ray photoelectron spectra, and reduction dynamics). The structure and reactivity of RuOx species change markedly with Ru surface density. RuOx existed preferentially as RuO42- species below 0.4 Ru/nm(2), probably as isolated Zr(RuO4)(2) interacting with ZrO2 surfaces. At higher surface densities, highly dispersed RuO2 domains coexisted with RuO4(2-) and ultimately formed small clusters and became the prevalent form of RuOx above 1.9 Ru/...
Several ZrO2‐supported ruthenium catalysts were prepared and utilized in the oxidation of 5‐hydroxym...
The present work is devoted to the investigation of oxidation reactions over RuO2 surfaces. Two main...
The structure and reactivity of the oxygen phases on Ru(0001) and Ru(100) and the bulk RuO2(101) sur...
The effects of RuOx structure on the selective oxidation of methanol to methyl formate (MF) at low t...
The structures of the RuOx species supported on monoclinic ZrO2 (m-ZrO2) after treatment in a wide t...
采用ZrO2负载的RuOx催化剂在低温(如373 K)下催化甲醇选择氧化合成甲酸甲酯,发现RuOx的结构可显著影响反应速率和产物选择性.在相近的甲醇转化率下,RuO42-物种的催化活性和对甲酸甲酯的选...
RuO2 domains supported on SnO2, ZrO2, TiO2, Al2O3, and SiO2 catalyze the oxidative conversion of me...
http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAM...
In situ core level photoelectron spectroscopy and mass spectrometry have been utilized to study the ...
New opportunities for narrowing the pressure and material gaps in studies of catalytic systems have ...
Three weight percent ruthenium catalysts were prepared by incipient-wet impregnation of two differen...
Surface composition and corresponding catalytic activity and selectivity of model Ru catalysts in me...
Over the past few years, RuO2 has developed into one of the best-characterized late transition metal...
One of the prerequisites for the detailed understanding of heterogeneous catalysis is the identifica...
Dimethyl ether (DME) reacts to form formaldehyde with high selectivity at 500-600 K on MoOx-ZrO2 cat...
Several ZrO2‐supported ruthenium catalysts were prepared and utilized in the oxidation of 5‐hydroxym...
The present work is devoted to the investigation of oxidation reactions over RuO2 surfaces. Two main...
The structure and reactivity of the oxygen phases on Ru(0001) and Ru(100) and the bulk RuO2(101) sur...
The effects of RuOx structure on the selective oxidation of methanol to methyl formate (MF) at low t...
The structures of the RuOx species supported on monoclinic ZrO2 (m-ZrO2) after treatment in a wide t...
采用ZrO2负载的RuOx催化剂在低温(如373 K)下催化甲醇选择氧化合成甲酸甲酯,发现RuOx的结构可显著影响反应速率和产物选择性.在相近的甲醇转化率下,RuO42-物种的催化活性和对甲酸甲酯的选...
RuO2 domains supported on SnO2, ZrO2, TiO2, Al2O3, and SiO2 catalyze the oxidative conversion of me...
http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAM...
In situ core level photoelectron spectroscopy and mass spectrometry have been utilized to study the ...
New opportunities for narrowing the pressure and material gaps in studies of catalytic systems have ...
Three weight percent ruthenium catalysts were prepared by incipient-wet impregnation of two differen...
Surface composition and corresponding catalytic activity and selectivity of model Ru catalysts in me...
Over the past few years, RuO2 has developed into one of the best-characterized late transition metal...
One of the prerequisites for the detailed understanding of heterogeneous catalysis is the identifica...
Dimethyl ether (DME) reacts to form formaldehyde with high selectivity at 500-600 K on MoOx-ZrO2 cat...
Several ZrO2‐supported ruthenium catalysts were prepared and utilized in the oxidation of 5‐hydroxym...
The present work is devoted to the investigation of oxidation reactions over RuO2 surfaces. Two main...
The structure and reactivity of the oxygen phases on Ru(0001) and Ru(100) and the bulk RuO2(101) sur...