Aromatic ethers such as diphenyl ether (DPE) represent molecules with different docking sites for alcohols leading to competing OH–O and OH–π interactions. In a multi-spectroscopic approach in combination with quantum chemical calculations the complex of DPE with tert-butyl alcohol (t-BuOH) is investigated in the electronic ground state (S<sub>0</sub>) and the electronically excited state (S<sub>1</sub>). FTIR, microwave as well as mass- and isomer-selective IR/R2PI spectra are recorded, revealing co-existing OH–O and OH–π isomers in the S<sub>0</sub> state. Surprisingly, they are predicted to be of almost equal stability in contrast to the previously investigated DPE–MeOH complex, where the OH–π structure is preferred by both theory and ex...
Many biological processes, such as chemical recognition and protein folding, are mainly controlled b...
Diphenyl ether (C$_{12}$H$_{10}$O) is a flexible molecule, and it offers two types of competing bind...
Dispersion interactions can play an important role in understanding unusual binding behaviors. This ...
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...
Dispersion interactions are omnipresent in intermolecular interactions, but their respective contrib...
Dispersion interactions are omnipresent in intermolecular interactions, but their respective contrib...
Dispersion interactions are omnipresent in intermolecular interactions, but their respective contrib...
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...
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...
Diphenyl ether (C$_{12}$H$_{10}$O) is a flexible molecule, and it offers two types of competing bind...
Dispersion interactions can play an important role in understanding unusual binding behaviors. This ...
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...
Dispersion interactions are omnipresent in intermolecular interactions, but their respective contrib...
Dispersion interactions are omnipresent in intermolecular interactions, but their respective contrib...
Dispersion interactions are omnipresent in intermolecular interactions, but their respective contrib...
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...
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...
Diphenyl ether (C$_{12}$H$_{10}$O) is a flexible molecule, and it offers two types of competing bind...
Dispersion interactions can play an important role in understanding unusual binding behaviors. This ...