Metal–organic frameworks (MOFs) provide new possibilities for their potential use in catalysis, gas storage/separation, and drug delivery. In this work, a computational study is performed on the interaction of biologically important organic molecules such as caffeine, urea, niacin, and glycine with the undercoordinated copper centers of the HKUST-1 MOF. Density functional theory calculations are used to identify the adsorption sites of the organic molecules in HKUST-1 and to calculate their interaction energies. Two types of interactions are calculated: (i) strong binding via their nitrogen or oxygen atoms with the copper atoms of the paddlewheel and (ii) hydrogen bonds with the carboxylate groups of the MOF. Certain molecules such as caffe...
We use molecular simulations to analyze the preferential adsorption sites of molecules that differ i...
Metal-organic frameworks (MOFs) with coordinatively unsaturated sites (CUS) offer interesting possib...
Using density functional theory, we systematically compute and investigate the binding enthalpies of...
Metal-organic frameworks (MOFs) have gained much attention as next-generation porous media for vario...
Metal-organic frameworks (MOFs) have gained much attention as next-generation porous media for vario...
A relatively new type of chemical compound is finding application in such areas as gas storage, and ...
The copper paddle-wheel is the building unit of many metal organic frameworks. Because of the abilit...
Modelling of the fundamental interactions between small organic molecule to metal-organic frameworks...
Metal–organic frameworks (MOFs) with open metal sites (OMS) are known to have selectivity in olefin/...
The interaction energies (IEs) of H2 and various organic ligands have been computed using coupled-cl...
Conventional molecular models fail to correctly describe interactions of adsorbates with coordinativ...
The copper paddle-wheel is the building unit of many metal organic frameworks. Because of the abilit...
Nanoporous materials such as metal-organic frameworks (MOFs) and zeolites are under investigation fo...
Small molecules may adsorb strongly in metal–organic frameworks (MOFs) through interactions with und...
The performance of different exchange–correlation functionals was evaluated for the description of t...
We use molecular simulations to analyze the preferential adsorption sites of molecules that differ i...
Metal-organic frameworks (MOFs) with coordinatively unsaturated sites (CUS) offer interesting possib...
Using density functional theory, we systematically compute and investigate the binding enthalpies of...
Metal-organic frameworks (MOFs) have gained much attention as next-generation porous media for vario...
Metal-organic frameworks (MOFs) have gained much attention as next-generation porous media for vario...
A relatively new type of chemical compound is finding application in such areas as gas storage, and ...
The copper paddle-wheel is the building unit of many metal organic frameworks. Because of the abilit...
Modelling of the fundamental interactions between small organic molecule to metal-organic frameworks...
Metal–organic frameworks (MOFs) with open metal sites (OMS) are known to have selectivity in olefin/...
The interaction energies (IEs) of H2 and various organic ligands have been computed using coupled-cl...
Conventional molecular models fail to correctly describe interactions of adsorbates with coordinativ...
The copper paddle-wheel is the building unit of many metal organic frameworks. Because of the abilit...
Nanoporous materials such as metal-organic frameworks (MOFs) and zeolites are under investigation fo...
Small molecules may adsorb strongly in metal–organic frameworks (MOFs) through interactions with und...
The performance of different exchange–correlation functionals was evaluated for the description of t...
We use molecular simulations to analyze the preferential adsorption sites of molecules that differ i...
Metal-organic frameworks (MOFs) with coordinatively unsaturated sites (CUS) offer interesting possib...
Using density functional theory, we systematically compute and investigate the binding enthalpies of...