39 results on '"Khare, Rachit"'
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2. Direct methane utilization through benzene dehydroalkylation catalyzed by Co2+ sites in ZSM-5 intersections
3. In situ impregnated Ni/Al2O3 catalysts prepared by binder jet 3D printing using nickel nitrate-containing ink
4. Promotion of adsorptive and catalytic properties of zeolitic Brønsted acid sites by proximal extra-framework Si(OH)x groups
5. Mechanism of Electrocatalytic H2 Evolution, Carbonyl Hydrogenation, and Carbon–Carbon Coupling on Cu
6. Porphyrinic MOF derived Single-atom electrocatalyst enables methanol oxidation
7. Chloride and Hydride Transfer as Keys to Catalytic Upcycling of Polyethylene into Liquid Alkanes
8. Engineering ORR Electrocatalysts from Co8Pt4 Carbonyl Clusters via ZIF‐8 Templating
9. Mechanism of Electrocatalytic H2 Evolution, Carbonyl Hydrogenation, and Carbon–Carbon Coupling on Cu.
10. Mechanism of Electrocatalytic H2Evolution, Carbonyl Hydrogenation, and Carbon–Carbon Coupling on Cu
11. Engineering ORR Electrocatalysts from Co8Pt4 Carbonyl Clusters via ZIF‐8 Templating.
12. Speciation and Reactivity Control of Cu-Oxo Clusters via Extraframework Al in Mordenite for Methane Oxidation
13. Structure–Activity Relationships in Ni- Carboxylate-Type Metal–Organic Frameworks’ Metamorphosis for the Oxygen Evolution Reaction
14. Low-temperature upcycling of polyolefins into liquid alkanes via tandem cracking-alkylation
15. Voc4cat: Vocabulary guidelines for NFDI4Cat
16. In Situ Impregnated Ni/Al2o3 Catalysts Prepared by Binder Jet 3d Printing Using Nickel Nitrate-Containing Ink
17. Mechanistic studies of methanol-to-hydrocarbons conversion on diffusion-free MFI samples
18. A mechanistic basis for the effects of crystallite size on light olefin selectivity in methanol-to-hydrocarbons conversion on MFI
19. Mechanistic Insights into ZIF‑8 Encapsulation of Atom-Precise Pt(M) Carbonyl Clusters.
20. Highly Active and Selective Sites for Propane Dehydrogenation in Zeolite Ga-BEA
21. Speciation of Cu-Oxo Clusters in Ferrierite for Selective Oxidation of Methane to Methanol
22. A descriptor for the relative propagation of the aromatic- and olefin-based cycles in methanol-to-hydrocarbons conversion on H-ZSM-5
23. Di- and Tetrameric Molybdenum Sulfide Clusters Activate and Stabilize Dihydrogen as Hydrides
24. Porphyrinic Mof Derived Single-Atom Electrocatalyst Enables Methanol Oxidation
25. Promotion of adsorptive and catalytic properties of zeolitic Brønsted acid sites by proximal extra-framework Si(OH)x groups.
26. Activity of Cu–Al–Oxo Extra-Framework Clusters for Selective Methane Oxidation on Cu-Exchanged Zeolites
27. Zeolite‐Stabilized Di‐ and Tetranuclear Molybdenum Sulfide Clusters Form Stable Catalytic Hydrogenation Sites
28. Front Cover: Importance of Methane Chemical Potential for Its Conversion to Methanol on Cu‐Exchanged Mordenite (Chem. Eur. J. 34/2020)
29. Importance of Methane Chemical Potential for Its Conversion to Methanol on Cu‐exchanged Mordenite
30. Development of photochemical and electrochemical cells for operando X-ray absorption spectroscopy during photocatalytic and electrocatalytic reactions
31. A mechanistic basis for the effect of aluminum content on ethene selectivity in methanol-to-hydrocarbons conversion on HZSM-5
32. Corrigendum to “A mechanistic basis for the effect of aluminum content on ethene selectivity in methanol-to-hydrocarbons conversion on HZSM-5” [J. Catal. 348 (2017) 300–305]
33. Implications of Cofeeding Acetaldehyde on Ethene Selectivity in Methanol-to-Hydrocarbons Conversion on MFI and Its Mechanistic Interpretation
34. Utilising Research And Development To Drive Customer-Centric Innovation.
35. A mechanistic understanding of light olefins selectivity in methanol-to-hydrocarbons conversion on MFI
36. Are you sitting on a data goldmine? What all retail brands need to know.
37. Mechanism of Electrocatalytic H 2 Evolution, Carbonyl Hydrogenation, and Carbon-Carbon Coupling on Cu.
38. Chloride and hydride transfer as keys to catalytic upcycling of polyethylene into liquid alkanes.
39. Importance of Methane Chemical Potential for Its Conversion to Methanol on Cu-exchanged Mordenite.
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