Dispersion interactions are omnipresent in intermolecular interactions, but their respective contributions are difficult to predict. Aromatic ethers offer competing docking sites for alcohols: the ether oxygen as a well known hydrogen bond acceptor, but also the aromatic π system. The interaction with two aromatic moieties in diphenyl ether can tip the balance towards π binding. We use a multi-spectroscopic approach to study the molecular recognition, the structure and internal dynamics of the diphenyl ether–methanol complex, employing infrared, infrared-ultraviolet and microwave spectroscopy. We find that the conformer with the hydroxy group of the alcohol binding to one aromatic π cloud and being coordinated by an aromatic C–H bond of the...
The structure of the isolated aggregate of phenyl vinyl ether and methanol is studied by combining a...
The interplay between intra- and intermolecular forces, with hydrogen bonding and London dispersion ...
Dispersion interactions can play an important role in understanding unusual binding behaviors. This ...
Dispersion interactions are omnipresent in intermolecular interactions, but their respective contrib...
Dispersion interactions are omnipresent in intermolecular interactions, but their respective contrib...
Aromatic ethers such as diphenyl ether (DPE) represent molecules with different docking sites for al...
Aromatic ethers such as diphenyl ether (DPE) represent molecules with different docking sites for al...
Aromatic ethers such as diphenyl ether (DPE) represent molecules with different docking sites for al...
Aromatic ethers such as diphenyl ether (DPE) represent molecules with different docking sites for al...
Many biological processes, such as chemical recognition and protein folding, are mainly controlled b...
Many biological processes, such as chemical recognition and protein folding, are mainly controlled b...
The structure of the isolated aggregate of phenyl vinyl ether and methanol is studied by combining a...
The structure of the isolated aggregate of phenyl vinyl ether and methanol is studied by combining a...
The structure of the isolated aggregate of phenyl vinyl ether and methanol is studied by combining a...
The structure of the isolated aggregate of phenyl vinyl ether and methanol is studied by combining a...
The structure of the isolated aggregate of phenyl vinyl ether and methanol is studied by combining a...
The interplay between intra- and intermolecular forces, with hydrogen bonding and London dispersion ...
Dispersion interactions can play an important role in understanding unusual binding behaviors. This ...
Dispersion interactions are omnipresent in intermolecular interactions, but their respective contrib...
Dispersion interactions are omnipresent in intermolecular interactions, but their respective contrib...
Aromatic ethers such as diphenyl ether (DPE) represent molecules with different docking sites for al...
Aromatic ethers such as diphenyl ether (DPE) represent molecules with different docking sites for al...
Aromatic ethers such as diphenyl ether (DPE) represent molecules with different docking sites for al...
Aromatic ethers such as diphenyl ether (DPE) represent molecules with different docking sites for al...
Many biological processes, such as chemical recognition and protein folding, are mainly controlled b...
Many biological processes, such as chemical recognition and protein folding, are mainly controlled b...
The structure of the isolated aggregate of phenyl vinyl ether and methanol is studied by combining a...
The structure of the isolated aggregate of phenyl vinyl ether and methanol is studied by combining a...
The structure of the isolated aggregate of phenyl vinyl ether and methanol is studied by combining a...
The structure of the isolated aggregate of phenyl vinyl ether and methanol is studied by combining a...
The structure of the isolated aggregate of phenyl vinyl ether and methanol is studied by combining a...
The interplay between intra- and intermolecular forces, with hydrogen bonding and London dispersion ...
Dispersion interactions can play an important role in understanding unusual binding behaviors. This ...