All Stories

  1. Metal-oxide interfaces and oxygen vacancies as dominant active sites in CO2 hydrogenation to methanol: Contrasting reactivity of Cu- and In-based functionalities
  2. Alternative Algebraic Perspectives on CO/H2 PROX over MnO2 Composite Catalysts
  3. Molecular dynamics and kinetic modelling of the CO and H2 oxidation pattern of a composite MnCeOx catalyst
  4. CO-PROX on MnO2 catalysts: DFT-based microkinetic and experimental macrokinetic approaches
  5. Molecular Dynamics and Kinetic Modelling of the Co and H2 Oxidation Pattern of a Composite Mnceox Catalyst
  6. DFT and kinetic evidences of the preferential CO oxidation pattern of manganese dioxide catalysts in hydrogen stream (PROX)
  7. Copper-Iron-Zinc-Cerium oxide compositions as most suitable catalytic materials for the synthesis of green fuels via CO2 hydrogenation
  8. Effective low-temperature catalytic methane oxidation over MnCeOx catalytic compositions
  9. Structural, energetic and kinetic database of catalytic reactions: Benzyl alcohol to benzaldehyde oxidation on MnOx...
  10. Benzyl alcohol to benzaldehyde oxidation on MnOx clusters: Unraveling atomistic features
  11. Tailoring manganese oxide catalysts for the total oxidation of pollutants in gas and liquid phase
  12. Development of a MnO₂-Modified Screen-Printed Electrode for Phenol Monitoring
  13. DFT insights into the oxygen-assisted selective oxidation of benzyl alcohol on manganese dioxide catalysts
  14. Totally-green Fuels via CO2 Hydrogenation
  15. Clean Syn-Fuels via Hydrogenation Processes: Acidity–Activity Relationship in O-Xylene Hydrotreating
  16. Lignin oxidation by MnO2 under the irradiation of blue light
  17. Definitive Assessment of the Level of Risk of Exhausted Catalysts: Characterization of Ni and V Contaminates at the Limit of Detection
  18. A New Class of MnCeOx Materials for the Catalytic Gas Exhausts Emission Control: A Study of the CO Model Compound Oxidation
  19. Nanostructured MnO2 for phenolic compounds degradation and monitoring
  20. Sunfuels from CO2 exhaust emissions: Insights into the role of photoreactor configuration by the study in laboratory and industrial environment
  21. A definitive assessment of the CO oxidation pattern of a nanocomposite MnCeOx catalyst
  22. Hydrogen Utilization in Green Fuel Synthesis via CO2 Conversion to Methanol over New Cu-Based Catalysts
  23. Probing the functionality of nanostructured MnCeOx catalysts in the carbon monoxide oxidation
  24. Probing the functionality of nanostructured MnCeO x catalysts in the carbon monoxide oxidation
  25. Catalytic Wet Air Oxidation (CWAO) of Industrial Wastewaters: Mechanistic Evidences, Catalyst Development and Kinetic Modeling
  26. Valorization of crude bio-oil to sustainable energy vector for applications in cars powering and on-board reformers via catalytic hydrogenation
  27. An experimental assessment of the ammonia temperature programmed desorption method for probing the surface acidic properties of heterogeneous catalysts
  28. Nanostructured MnOx catalysts in the liquid phase selective oxidation of benzyl alcohol with oxygen
  29. Recent advances on wet air oxidation catalysts for treatment of industrial wastewaters
  30. Activity patterns of metal oxide catalysts in the synthesis of N-phenylpropionamide from propanoic acid and aniline
  31. Nanostructured MnOx catalysts in the liquid phase selective oxidation of benzyl alcohol with oxygen: Part I. Effects of Ce and Fe addition on structure and reactivity
  32. Deactivation Pattern of a “Model” Ni/MgO Catalyst in the Pre-Reforming of n-Hexane
  33. Catalytic behaviour of a bifunctional system for the one step synthesis of DME by CO2 hydrogenation
  34. The changing nature of the active site of Cu-Zn-Zr catalysts for the CO2 hydrogenation reaction to methanol
  35. Multipurpose composite MnCeOxcatalysts for environmental applications
  36. Latest Advances in the Catalytic Hydrogenation of Carbon Dioxide to Methanol/Dimethylether
  37. A mechanistic assessment of the wet air oxidation activity of MnCeOx catalyst toward toxic and refractory organic pollutants
  38. Highly effective oxide catalyst for the detoxification of oil mill wastewaters by the wet air oxidation process
  39. Hybrid Cu–ZnO–ZrO2/H-ZSM5 system for the direct synthesis of DME by CO2 hydrogenation
  40. How oxide carriers control the catalytic functionality of the Cu–ZnO system in the hydrogenation of CO2 to methanol
  41. Effects of oxide carriers on surface functionality and process performance of the Cu–ZnO system in the synthesis of methanol via CO2 hydrogenation
  42. Highly active screen-printed electrocatalysts for water oxidation based on β-manganese oxide
  43. How surface and textural properties affect the behaviour of Mn-based catalysts during transesterification reaction to produce biodiesel
  44. Efficiency and reactivity pattern of ceria-based noble metal and transition metal-oxide catalysts in the wet air oxidation of phenol
  45. Factors Controlling the Energy of Nitrogen Monolayer Coverage on High Surface Area Catalyst Oxide Carriers
  46. Role of the ceria promoter and carrier on the functionality of Cu-based catalysts in the CO2-to-methanol hydrogenation reaction
  47. CH4 decomposition on Ni and Co thin layer catalysts to produce H2 for fuel cell
  48. Raman scattering of MnOxCeOx composite catalysts: structural aspects and laser-heating effects
  49. Mechanistic and kinetic insights into the wet air oxidation of phenol with oxygen (CWAO) by homogeneous and heterogeneous transition-metal catalysts
  50. Diesel-fuel improver production via novel heterogenized solid-acid catalysts
  51. Highly effective MnCeOx catalysts for biodiesel production by transesterification of vegetable oils with methanol
  52. Physico-chemical and catalytic properties of effective nanostructured MnCeOx systems for environmental applications
  53. Catalytic etherification of glycerol by tert-butyl alcohol to produce oxygenated additives for diesel fuel
  54. Doped Ni Thin Layer Catalysts for Catalytic Decomposition of Natural Gas to produce hydrogen
  55. Basic evidences for methanol-synthesis catalyst design
  56. Catalytic decomposition of natural gas for COx-free hydrogen production in a structured multilayer reactor
  57. Nanosize Effects, Physicochemical Properties, And Catalytic Oxidation Pattern of the Redox-Precipitated MnCeOx System
  58. Optimization of the MnCeOx system for the catalytic wet oxidation of phenol with oxygen (CWAO)
  59. Solid-state interactions, adsorption sites and functionality of Cu-ZnO/ZrO2 catalysts in the CO2 hydrogenation to CH3OH
  60. Catalytic Features of Mg Modified Ni/SiO2/Silica Cloth Systems in the Decomposition of Methane for Making “CO x -Free” H2
  61. Synthesis of highly dispersed MnCeOx catalysts via a novel “redox-precipitation” route
  62. Improved MnCeOxSystems for the Catalytic Wet Oxidation (CWO) of Phenol in Wastewater Streams
  63. Synthesis, characterization and activity pattern of Cu–ZnO/ZrO2 catalysts in the hydrogenation of carbon dioxide to methanol
  64. Basic Evidence of the Molecular Dispersion of MnCeOx Catalysts Synthesized via a Novel “Redox-Precipitation” Route.
  65. Basic Evidence of the Molecular Dispersion of MnCeOxCatalysts Synthesized via a Novel “Redox-Precipitation” Route
  66. Activity and stability of iron based catalysts in advanced fischer-tropsch technology via co2-rich syngas conversion
  67. Selective oxidation of propane on Nafion/PEEK-WC catalytic membranes in a multifunctional reaction system
  68. Activity pattern of low-loaded FeOx/SiO2 catalysts in the selective oxidation of C1 and C3 alkanes with oxygen
  69. A basic assessment of the reactivity of Ni catalysts in the decomposition of methane for the production of “COx-free” hydrogen for fuel cells application
  70. Physico-chemical properties and reactivity of Au/CeO2 catalysts in total and selective oxidation of CO
  71. Probing the factors affecting structure and activity of the Au/CeO2 system in total and preferential oxidation of CO
  72. Magnesia Supported Nickel Catalysts Synthesis, Structure Models and Catalytic Properties
  73. Basic Evaluation of the Catalytic Pattern of the CuCeOx System in the Wet Oxidation of Phenol with Oxygen
  74. Basic relationships in the pre-reforming of n-hexane on Ni/Mgo catalyst
  75. Ni Thin Layer Catalysts for Making H2 “COx-Free” by Decomposition of Natural Gas in a Structured Multilayer Reactor
  76. Metal–support interactions and reactivity of Co/CeO2 catalysts in the Fischer–Tropsch synthesis reaction
  77. Structure and reactivity in the selective oxidation of methane to formaldehyde of low-loaded FeOx/SiO2 catalysts
  78. Factors affecting the efficiency of Nafion-based catalytic membranes in the selective oxidation of light paraffins mediated by the Fenton system
  79. Modelling the activity?stability pattern of Ni/MgO catalysts in the pre-reforming of n-hexane
  80. Preparation method and structure of active sites of FeOx/SiO2 catalysts in methane to formaldehyde selective oxidation
  81. Scientific Basis for Process and Catalyst Design in the Selective Oxidation of Methane to Formaldehyde
  82. Structure-activity relationships in the partial oxidation of methane to formaldehyde on FeOx/SiO2 catalysts
  83. Integrated synthesis of dimethylether via CO2 hydrogenation
  84. Scientific Basis for Process and Catalyst Design in the Selective Oxidation of Methane to Formaldehyde
  85. Activity and resistance to leaching of Cu-based catalysts in the wet oxidation of phenol
  86. Promoting Effect of CeO2in Combustion Synthesized Pt/CeO2Catalyst for CO Oxidation
  87. TEM evidence for factors affecting the genesis of carbon species on bare and K-promoted Ni/MgO catalysts during the dry reforming of methane
  88. Partial Oxidation of Methane to Formaldehyde: A Theoretic-Experimental Approach to Process Design and Catalyst Development
  89. Effect of Fe-addition on the catalytic activity of silicas in the partial oxidation of methane to formaldehyde
  90. On the potential of the multifunctional three phase catalytic membrane reactor in the selective oxidation of light alkanes by Fe2+–H2O2 Fenton system
  91. Structure and redox properties of bulk and supported manganese oxide catalysts
  92. Mechanistic evidences of the synthesis of methyl formate from methane and air on oxide catalysts
  93. Partial Oxidation of Methane to Formaldehyde on Fe-doped Silica Catalysts
  94. Factors controlling the selectivity of V2O5 supported catalysts in the oxidative dehydrogenation of propane
  95. Kinetics of the partial oxidation of methane to formaldehyde on silica catalyst
  96. Selective oxidation of propane on a Nafion-based catalytic membrane mediated by FeII–H2O2 Fenton system
  97. Partial oxidation of propane on Nafion supported catalytic membranes
  98. Modelling the partial oxidation of methane to formaldehyde on silica catalyst
  99. SO2 resistant Fe/ZSM-5 catalysts for the conversion of nitrogen oxides
  100. Design, preparation and testing of effective FeOx/SiO2 catalysts in methane to formaldehyde selective oxidation
  101. Kinetic and mechanistic study of the partial oxidation of methane to formaldehyde on silica catalyst
  102. Two step synthesis of methyl formate from CH4 and air via formaldehyde: surface reactivity of oxide catalysts towards HCHO
  103. Alkali promotion of Ni/MgO catalysts
  104. How oxide carriers affect the reactivity of V2O5 catalysts in the oxidative dehydrogenation of propane
  105. A characterization study of the surface acidity of solid catalysts by temperature programmed methods
  106. Preface
  107. Coordination Symmetry and Reduction Features of V Ions in V2O5/SiO2Catalysts: Relevance to the Partial Oxidation of Light Alkanes
  108. Oxidative dehydrogenation of propane on supported V2O5 catalysts. The role of redox and acid-base properties
  109. Role of Acid–Base Properties of SiO2-Based Catalysts in the Selective Oxidation of Propane
  110. Working Mechanism of Oxide Catalysts in the Partial Oxidation of Methane to Formaldehyde. I. Catalytic Behaviour of SiO2, MoO3/SiO2, V2O5/SiO2, TiO2, and V2O5/TiO2Systems
  111. Working Mechanism of Oxide Catalysts in the Partial Oxidation of Methane to Formaldehyde. II. Redox Properties and Reactivity of SiO2, MoO3/SiO2, V2O5/SiO2, TiO2, and V2O5/TiO2Systems
  112. Surface structures, reduction pattern and oxygen chemisorption of V2O5/SiO2catalysts
  113. Active species and working mechanism of silica supported MoO3 and V2O5 catalysts in the selective oxidation of light alkanes
  114. A comparative study of the partial oxidation of methane to formaldehyde on bulk and silica supported MoO3 and V2O5 catalysts
  115. Palladium catalysts supported on oligomeric aramides in the liquid-phase hydrogenation of phenylacetylene
  116. Propane oxidative dehydrogenation on silica based oxide catalysts
  117. Silica-Supported Molybdena Catalysts. Surface Structures, Reduction Pattern, and Oxygen Chemisorption
  118. Effect of vanadia loading in propane oxidative dehydrogenation on V2O5/SiO2 catalysts
  119. On the nature of active sites of silica based oxide catalysts in the partial oxidation of methane to formaldehyde
  120. Temperature-programmed reaction: A powerful and reliable method for catalyst testing in the partial oxidation of methane to formaldehyde
  121. Characterization of Li-Doped Ni/MgO Catalysts
  122. Mechanistic evidence of the partial oxidation of methane to formaldehdye over silica based oxide catalysts by temperature programmed reaction studies
  123. Palladium-based catalysts supported on oligomeric aramides. A TPR investigation
  124. On the Nature of the Catalytic Activity of Silica-Based Oxide Catalysts in the Partial Oxidation of Methane to Formaldehyde with O2
  125. Surface structure of Ni/MgO catalysts: Effects of carbon and hydrogen on the reactivity towards CO. HRTEM and FTIR studies
  126. Methane Partial Oxidation to Formaldehyde on Silica Supported Oxide Catalysts: Role of MoO3 and V2O5
  127. On the reduction of Pd2+ forms in Pd/γ-Al2O3 catalysts
  128. High loading Ni/MgO catalysts. Surface characterization by IR spectra of adsorbed CO
  129. A Temperature-Programmed Reaction Method for Catalyst Testing in the Partial Oxidation of Methane to Formaldehyde
  130. Magnesia-Supported Nickel Catalysts II. Surface Properties and Reactivity in Methane Steam Reforming
  131. Corrigendum
  132. Effect of the metal oxide loading on the activity of silica supported MoO3 and V2O5 catalysts in the selective partial oxidation of methane
  133. Surface Structure and Reactivity of Magnesia-Supported Nickel Catalysts: A Model System
  134. Interaction pathway of chloride ions with γ-Al2O3: surface acidity and thermal stability of the Cl/γ-Al2O3system
  135. Selective partial oxidation of light paraffins with hydrogen peroxide on thin-layer supported Nafion-H catalysts
  136. Magnesia-supported nickel catalysts I. Factors affecting the structure and morphological properties
  137. Influence of the calcination treatment on the surface chemical properties of nickel/magnesia catalyst: a carbon dioxide-temperature programmed desorption approach
  138. Thin-layer supported nafion catalysts for the partial oxidation of light alkanes
  139. Influence of Alkali Metals (Li And K) Addition to Ni/Mgo Catalyst
  140. On the reduction of NiO forms in magnesia supported catalysts
  141. Temperature-programmed reduction study of NiO–MgO interactions in magnesia-supported Ni catalysts and NiO–MgO physical mixture
  142. The role of Ni2+ diffusion on the reducibility of NiO/MgO system: A combined TRP-XPS study
  143. Activity and Characterization of Alkali Doped Ni/MgO Catalysts