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Your search keyword '"Pérez‐Ramírez, Javier"' showing total 19 results

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19 results on '"Pérez‐Ramírez, Javier"'

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1. Biomass valorisation over polyoxometalate-based catalysts.

2. The Future of Chemical Sciences is Sustainable.

3. The Future of Chemical Sciences is Sustainable.

4. Electrochemical Reduction of Carbon Dioxide to 1‐Butanol on Oxide‐Derived Copper.

5. Electrochemical Reduction of Carbon Dioxide to 1‐Butanol on Oxide‐Derived Copper.

6. Advanced kinetic models through mechanistic understanding: Population balances for methylenedianiline synthesis.

7. Operando Synchrotron X-ray Powder Diffraction and Modulated-Excitation Infrared Spectroscopy Elucidate the CO2 Promotion on a Commercial Methanol Synthesis Catalyst.

8. Operando Synchrotron X-ray Powder Diffraction and Modulated-Excitation Infrared Spectroscopy Elucidate the CO2 Promotion on a Commercial Methanol Synthesis Catalyst.

9. Indium Oxide as a Superior Catalyst for Methanol Synthesis by CO2 Hydrogenation.

10. Indium Oxide as a Superior Catalyst for Methanol Synthesis by CO2 Hydrogenation.

11. Phase-controlled synthesis of iron phosphates via phosphation of β-FeOOH nanorods.

12. Aluminum Redistribution during the Preparation of Hierarchical Zeolites by Desilication.

13. Rediscovering zeolite mechanochemistry – A pathway beyond current synthesis and modification boundaries.

14. Production of bio-derived ethyl lactate on GaUSY zeolites prepared by post-synthetic galliation.

15. Solid-State Chemistry of Cuprous Delafossites: Synthesisand Stability Aspects.

16. CuCrO2 Delafossite: A Stable Copper Catalyst for Chlorine Production.

17. HierarchyBrings Function: Mesoporous Clinoptiloliteand L Zeolite Catalysts Synthesized by Tandem Acid–Base Treatments.

18. Cover Picture: Indium Oxide as a Superior Catalyst for Methanol Synthesis by CO2 Hydrogenation (Angew. Chem. Int. Ed. 21/2016).

19. Cover Picture: From the Lindlar Catalyst to Supported Ligand-Modified Palladium Nanoparticles: Selectivity Patterns and Accessibility Constraints in the Continuous-Flow Three-Phase Hydrogenation of Acetylenic Compounds (Chem. Eur. J. 20/2014).

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