The porous MIL-47 material shows a selective adsorption behavior for para-, ortho-, and meta-isomers of xylenes, making the material a serious candidate for separation applications. The origin of the selectivity lies in the differences in interactions (energetic) and confining (entropic). This paper investigates the xylene-framework interactions and the xylene-xylene interactions with quantum mechanical calculations, using a dispersion-corrected density functional and periodic boundary conditions to describe the crystal. First, the strength and geometrical characteristics of the optimal xylene-xylene interactions are quantified by studying the pure and mixed pairs in gas phase. An extended set of initial structures is created and optimized ...
We report a study of the use of the porous metal–organic framework material MIL-53(Fe), Fe<sup>III<...
We report a study of the use of the porous metal–organic framework material MIL-53(Fe), Fe<sup>III<...
We report a study of the use of the porous metal–organic framework material MIL-53(Fe), Fe<sup>III<...
The porous MIL-47 material shows a selective adsorption behavior for para-, ortho-, and meta-isomers...
The porous MIL-47 material shows a selective adsorption behavior for para-, ortho-, and meta-isomers...
Recently, the spectrum of nanoporous materials like zeolites and zeotype structures was further expa...
Recently, the spectrum of nanoporous materials like zeolites and zeotype structures was further expa...
Vapor-phase adsorption and separation of the C8 alkylaromatic components p-xylene, m-xylene, o-xylen...
The capacity and selectivity of the metal-organic framework MIL-47 for liquid phase adsorption are s...
This work presents results of molecular simulations on adsorption of mixtures of the four xylene iso...
We report a study of the use of the porous metal–organic framework material MIL-53(Fe), FeIII(OH)0.8...
Summary: Xylene mixtures and the three individual isomers are valuable chemical feedstocks in the ch...
Xylene isomers are precursors in many important chemical processes, yet their separation via crystal...
Xylene isomers are precursors in many important chemical processes, yet their separation via crystal...
Improved xylene separation performance through selective sorption of <i>para</i>-xylene on an indust...
We report a study of the use of the porous metal–organic framework material MIL-53(Fe), Fe<sup>III<...
We report a study of the use of the porous metal–organic framework material MIL-53(Fe), Fe<sup>III<...
We report a study of the use of the porous metal–organic framework material MIL-53(Fe), Fe<sup>III<...
The porous MIL-47 material shows a selective adsorption behavior for para-, ortho-, and meta-isomers...
The porous MIL-47 material shows a selective adsorption behavior for para-, ortho-, and meta-isomers...
Recently, the spectrum of nanoporous materials like zeolites and zeotype structures was further expa...
Recently, the spectrum of nanoporous materials like zeolites and zeotype structures was further expa...
Vapor-phase adsorption and separation of the C8 alkylaromatic components p-xylene, m-xylene, o-xylen...
The capacity and selectivity of the metal-organic framework MIL-47 for liquid phase adsorption are s...
This work presents results of molecular simulations on adsorption of mixtures of the four xylene iso...
We report a study of the use of the porous metal–organic framework material MIL-53(Fe), FeIII(OH)0.8...
Summary: Xylene mixtures and the three individual isomers are valuable chemical feedstocks in the ch...
Xylene isomers are precursors in many important chemical processes, yet their separation via crystal...
Xylene isomers are precursors in many important chemical processes, yet their separation via crystal...
Improved xylene separation performance through selective sorption of <i>para</i>-xylene on an indust...
We report a study of the use of the porous metal–organic framework material MIL-53(Fe), Fe<sup>III<...
We report a study of the use of the porous metal–organic framework material MIL-53(Fe), Fe<sup>III<...
We report a study of the use of the porous metal–organic framework material MIL-53(Fe), Fe<sup>III<...