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3. 'Weakly Ligated, Labile Ligand' Nanoparticles: The Case of Ir(0)n·(H+Cl–)m

4. A historical perspective on porphyrin-based metal–organic frameworks and their applications

5. Destruction of chemical warfare agents using metal–organic frameworks

6. Ultrahigh Surface Area Zirconium MOFs and Insights into the Applicability of the BET Theory

7. Exploiting parameter space in MOFs: a 20-fold enhancement of phosphate-ester hydrolysis with UiO-66-NH2

8. Defining the Proton Topology of the Zr6-Based Metal–Organic Framework NU-1000

9. Computational Design of Metal–Organic Frameworks Based on Stable Zirconium Building Units for Storage and Delivery of Methane

10. Beyond post-synthesis modification: evolution of metal–organic frameworks via building block replacement

11. Metal–Organic Framework Thin Films Composed of Free-Standing Acicular Nanorods Exhibiting Reversible Electrochromism

12. Perfluoroalkane Functionalization of NU-1000 via Solvent-Assisted Ligand Incorporation: Synthesis and CO2 Adsorption Studies

13. Carborane-Based Metal–Organic Framework with High Methane and Hydrogen Storage Capacities

14. A review of the kinetics and mechanisms of formation of supported-nanoparticle heterogeneous catalysts

15. A porous proton-relaying metal-organic framework material that accelerates electrochemical hydrogen evolution

16. Controlling structure and porosity in catalytic nanoparticle superlattices with DNA

17. Exploiting parameter space in MOFs: a 20-fold enhancement of phosphate-ester hydrolysis with UiO-66-NH

18. Water-stable zirconium-based metal-organic framework material with high-surface area and gas-storage capacities

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