Reversible structural transition between the Large (LP) and Narrow Pore (NP) forms (breathing phenomena) of the MIL-53(X, X = Al, Cr, Fe, Ga) Metal Organic Framework (MOF) is probably one of the most amazing physical properties of this class of soft-porous materials. Whereas great attention has been paid to the elucidation of the physical mechanism ruling this reversible transition, the effect of the functionalization on the flexibility has been less explored. Among functionalized MIL-53(Al) materials, the case of NH2-MIL-53(Al) is undoubtedly a very intriguing structural transition rarely observed, and the steadier phase corresponds to the narrow pore form. In this work, the flexibility of the NH2-MIL-53(Al) metal organic framework was inv...
International audienceThe highly flexible hybrid nanoporous MOF MIL-53(Cr) was evoked as a potential...
International audienceThe highly flexible hybrid nanoporous MOF MIL-53(Cr) was evoked as a potential...
Metal-organic frameworks (MOFs) are a new class of microporous materials that possess framework flex...
International audienceReversible structural transition between the Large (LP) and Narrow Pore (NP) f...
Reversible structural transition between the Large (LP) and Narrow Pore (NP) forms (breathing phenom...
International audienceReversible structural transition between the Large (LP) and Narrow Pore (NP) f...
The breathing of the flexible metal organic framework MIL-53(Cr) has been widely explored by both ex...
In this paper, we rationalize the thermodynamics behind the guest-induced structural transitions of ...
The breathing of the flexible metal organic framework MIL-53(Cr) has been widely explored by both e...
The breathing of the flexible metal organic framework MIL-53(Cr) has been widely explored by both e...
ABSTRACT Gas adsorption in pores of flexiblemetal-organic frameworks (MOF) induces elastic deformati...
International audienceDynamics of confined molecules within porous materials is equally important as...
To exploit the full potential of metal-organic frameworks as solid adsorbents in water-adsorption ap...
When adsorbing guest molecules, the porous metal-organic framework MIL-53(Cr) may vary its cell para...
When adsorbing guest molecules, the porous metal-organic framework MIL-53(Cr) may vary its cell para...
International audienceThe highly flexible hybrid nanoporous MOF MIL-53(Cr) was evoked as a potential...
International audienceThe highly flexible hybrid nanoporous MOF MIL-53(Cr) was evoked as a potential...
Metal-organic frameworks (MOFs) are a new class of microporous materials that possess framework flex...
International audienceReversible structural transition between the Large (LP) and Narrow Pore (NP) f...
Reversible structural transition between the Large (LP) and Narrow Pore (NP) forms (breathing phenom...
International audienceReversible structural transition between the Large (LP) and Narrow Pore (NP) f...
The breathing of the flexible metal organic framework MIL-53(Cr) has been widely explored by both ex...
In this paper, we rationalize the thermodynamics behind the guest-induced structural transitions of ...
The breathing of the flexible metal organic framework MIL-53(Cr) has been widely explored by both e...
The breathing of the flexible metal organic framework MIL-53(Cr) has been widely explored by both e...
ABSTRACT Gas adsorption in pores of flexiblemetal-organic frameworks (MOF) induces elastic deformati...
International audienceDynamics of confined molecules within porous materials is equally important as...
To exploit the full potential of metal-organic frameworks as solid adsorbents in water-adsorption ap...
When adsorbing guest molecules, the porous metal-organic framework MIL-53(Cr) may vary its cell para...
When adsorbing guest molecules, the porous metal-organic framework MIL-53(Cr) may vary its cell para...
International audienceThe highly flexible hybrid nanoporous MOF MIL-53(Cr) was evoked as a potential...
International audienceThe highly flexible hybrid nanoporous MOF MIL-53(Cr) was evoked as a potential...
Metal-organic frameworks (MOFs) are a new class of microporous materials that possess framework flex...