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4. Molecular Imprinting

7. Efficiency of supported and incorporated W-SBA15 catalytic systems for oxidative desulfurization of sulfur model molecules, model fuels and LGO

8. Catalysis in confined spaces: endohedral functionalization of hemicryptophane molecular cages

9. Caractérisation par STEM-HAADF haute résolution de nanoparticules de MoS2 dans des supports mésoporeux

10. High resolution HAADF-STEM imaging of MoS2 nanometric phase encapsulated within different mesoporous supports

11. Efficient access to functionalised indoles via improved heterogeneous Larock synthesis or 'on water' C-H arylation

12. Matériaux hybrides 'complexes de palladium@silice mésoporeuse' pour l'obtention sélective de N-hétérocycles carbolylés

13. Selective synthesies of 2 types of N-heterocycles through heterogeneous multi-catalysis

21. Molecular Imprinting.

35. Synthesis, Characterizations and Applications of Fluoroazaphosphatranes.

36. Integrated, one-pot carbon capture and utilisation using porous ionic liquids.

37. Enantio- and Substrate-Selective Recognition of Chiral Neurotransmitters with C 3 -Symmetric Switchable Receptors.

38. Enantiopure encaged Verkade's superbases: Synthesis, chiroptical properties, and use as chiral derivatizing agent.

39. Bioinspired Oxidation of Methane in the Confined Spaces of Molecular Cages.

40. Endohedral Functionalized Cage as a Tool to Create Frustrated Lewis Pairs.

41. Remote control of helical chirality: thermodynamic resolution of a racemic mixture of CTV units by remote stereogenic centers.

42. Catalytic activity of an encaged Verkade's superbase in a base-catalyzed Diels-Alder reaction.

43. Azaphosphatrane organocatalysts in confined space: cage effect in CO(2) conversion.

44. Superbases in confined space: control of the basicity and reactivity of the proton transfer.

45. Azaphosphatranes as structurally tunable organocatalysts for carbonate synthesis from CO2 and epoxides.

46. Shorter and modular synthesis of hemicryptophane-tren derivatives.

47. Nanoscale organization of thiol and arylsulfonic acid on silica leads to a highly active and selective bifunctional, heterogeneous catalyst.

48. Organized surface functional groups: cooperative catalysis via thiol/sulfonic acid pairing.

50. Design of heterogeneous catalysts via multiple active site positioning in organic-inorganic hybrid materials.

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