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1. Pinpointing and Quantifying the Aluminum Distribution in Zeolite Catalysts Using Anomalous Scattering at the Al Absorption Edge.

2. Copper-exchanged large-port and small-port mordenite (MOR) for methane-to-methanol conversion.

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3. Comparative performance of Cu-zeolites in the isothermal conversion of methane to methanol.

5. On the Mechanism Underlying the Direct Conversion of Methane to Methanol by Copper Hosted in Zeolites; Braiding Cu K-Edge XANES and Reactivity Studies.

6. Biomass-mediated ZSM-5 zeolite synthesis: when self-assembly allows to cross the Si/Al lower limit.

7. Characterization at the Level of Individual Crystals: Single-Crystal MFI Type Zeolite Grains.

8. Distribution of aluminum over different T-sites in ferrierite zeolites studied with aluminum valence to core X-ray emission spectroscopy.

9. Assessing the relative stability of copper oxide clusters as active sites of a CuMOR zeolite for methane to methanol conversion: size matters?

10. Combined PDF and Rietveld studies of ADORable zeolites and the disordered intermediate IPC-1P.

11. The effect of water on the mechanical properties of soluble and insoluble ceramic cements.

12. Structural analysis of hierarchically organized zeolites.

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

14. Location of Ge and extra-framework species in the zeolite ITQ-24.

15. Zeolites with continuously tuneable porosity.

16. The assembly-disassembly-organization-reassembly mechanism for 3D-2D-3D transformation of germanosilicate IWW zeolite.

17. Comparison of homogeneous and heterogeneous catalysts for glucose-to-fructose isomerization in aqueous media.

19. Synthesis of Zn-containing microporous aluminophosphate with the STA-1 structure.

20. Dopant-siting selectivity in nanoporous catalysts: control of proton accessibility in zeolite catalysts through the rational use of templates.

21. Molecular insights into the self-aggregation of aromatic molecules in the synthesis of nanoporous aluminophosphates: a multilevel approach.