International audienceWe present a unified thermodynamic description of the breathing transitions between large pore (lp) and narrow pore (np) phases of MIL-53 (Cr) observed during the adsorption of guest molecules and the mechanical compression in the process of mercury porosimetry. By revisiting recent experimental data on mercury intrusion and in situ XRD during CO2 adsorption, we demonstrate that the magnitude of the adsorption stress exerted inside the pores by guest molecules, which is required for inducing the breathing transition, corresponds to the magnitude of the external pressure applied from the outside that causes the respective transformation between lp and np phases. We show that, when a stimulus is applied to breathing MOFs...
<div><p>A new semi-analytical mean-field model is proposed to rationalise breathing of MIL-53 type m...
*S Supporting Information ABSTRACT: Understanding the adsorption of water in metal−organic framework...
Structural transformation of MIL-53(Al) metal organic framework from large pore to narrow pore form...
International audienceWe present a unified thermodynamic description of the breathing transitions be...
Gas adsorption in pores of flexible metal−organic frameworks (MOF) induces elastic deformation and s...
ABSTRACT Gas adsorption in pores of flexiblemetal-organic frameworks (MOF) induces elastic deformati...
International audienceThe use of the osmotic thermodynamic model, combined with a series of methane ...
International audienceGas adsorption in pores of flexible metal−organic frameworks (MOF) induces ela...
The breathing of the flexible metal organic framework MIL-53(Cr) has been widely explored by both ex...
The breathing of the flexible metal organic framework MIL-53(Cr) has been widely explored by both e...
The mechanical properties of a MIL-53(Al) and H<sub>2</sub>O composite (MIL-53(Al)⊃H<sub>2</sub>O)...
International audiencehysteresis of intrusion–extrusion of mercury observed in MIL-53(Cr) particles ...
The use of the osmotic thermodynamic model, combined with a series of methane and carbon dioxide gas...
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...
<div><p>A new semi-analytical mean-field model is proposed to rationalise breathing of MIL-53 type m...
*S Supporting Information ABSTRACT: Understanding the adsorption of water in metal−organic framework...
Structural transformation of MIL-53(Al) metal organic framework from large pore to narrow pore form...
International audienceWe present a unified thermodynamic description of the breathing transitions be...
Gas adsorption in pores of flexible metal−organic frameworks (MOF) induces elastic deformation and s...
ABSTRACT Gas adsorption in pores of flexiblemetal-organic frameworks (MOF) induces elastic deformati...
International audienceThe use of the osmotic thermodynamic model, combined with a series of methane ...
International audienceGas adsorption in pores of flexible metal−organic frameworks (MOF) induces ela...
The breathing of the flexible metal organic framework MIL-53(Cr) has been widely explored by both ex...
The breathing of the flexible metal organic framework MIL-53(Cr) has been widely explored by both e...
The mechanical properties of a MIL-53(Al) and H<sub>2</sub>O composite (MIL-53(Al)⊃H<sub>2</sub>O)...
International audiencehysteresis of intrusion–extrusion of mercury observed in MIL-53(Cr) particles ...
The use of the osmotic thermodynamic model, combined with a series of methane and carbon dioxide gas...
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...
<div><p>A new semi-analytical mean-field model is proposed to rationalise breathing of MIL-53 type m...
*S Supporting Information ABSTRACT: Understanding the adsorption of water in metal−organic framework...
Structural transformation of MIL-53(Al) metal organic framework from large pore to narrow pore form...