Recent work on understanding why protons migrate with increasing temperature in short, strong hydrogen bonds is extended here to three more organic, crystalline systems. Inelastic neutron scattering and density functional theory based simulations are used to investigate structure, vibrations, and dynamics of these systems as functions of temperature. The mechanism determined in a previous work on urea phosphoric acid of low frequency vibrations stabilizing average crystal structures, in which the potential energy well of the hydrogen bond has its minimum shifted towards the center of the bond, is found to be valid here. The new feature of the N–H?O hydrogen bonds studied in this work is that the proton is transferred from the donor atom to ...
Combination of comprehensive investigations of the spin-lattice relaxation rate of proton and low te...
Seven multi-component molecular crystals containing O–H⋯O/O+–H⋯O− and N+–H⋯O− short strong hydrogen ...
We compare results from single crystal X-ray diffraction and FTIR spectroscopy to elucidate the natu...
Recent work on understanding why protons migrate with increasing temperature in short, strong hydrog...
Recent work on understanding why protons migrate with increasing temperature in short, strong hydrog...
Recent neutron diffraction data have shown that the hydrogen atom involved in the short, strong hydr...
Chapter 1 gives an introduction to hydrogen bonding and the existing research surrounding short stro...
Hydrogen bonds are of great interest in the solid state due to their importance in structural, funct...
Seven multi-component molecular crystals containing O-H⋯O/O+-H⋯O- and N+-H⋯O- short strong hydrogen ...
Seven multi-component molecular crystals containing O-H⋯O/O+-H⋯O- and N+-H⋯O- short strong hydrogen ...
The tunneling dynamics of protons involved in hydrogen bonds between carboxylic acid dimers is deter...
The phenomenon of solid-state proton migration within molecular complexes containing short hydrogen ...
The phenomenon of solid-state proton migration within molecular complexes containing short hydrogen ...
Taking the example of vibrational-assisted concerted proton exchange in cyclic (HF)n (n) 4, 5) oligo...
The molecular complex between 3,5-dinitrobenzoic acid and nicotinic acid (35DBNA) has been studied b...
Combination of comprehensive investigations of the spin-lattice relaxation rate of proton and low te...
Seven multi-component molecular crystals containing O–H⋯O/O+–H⋯O− and N+–H⋯O− short strong hydrogen ...
We compare results from single crystal X-ray diffraction and FTIR spectroscopy to elucidate the natu...
Recent work on understanding why protons migrate with increasing temperature in short, strong hydrog...
Recent work on understanding why protons migrate with increasing temperature in short, strong hydrog...
Recent neutron diffraction data have shown that the hydrogen atom involved in the short, strong hydr...
Chapter 1 gives an introduction to hydrogen bonding and the existing research surrounding short stro...
Hydrogen bonds are of great interest in the solid state due to their importance in structural, funct...
Seven multi-component molecular crystals containing O-H⋯O/O+-H⋯O- and N+-H⋯O- short strong hydrogen ...
Seven multi-component molecular crystals containing O-H⋯O/O+-H⋯O- and N+-H⋯O- short strong hydrogen ...
The tunneling dynamics of protons involved in hydrogen bonds between carboxylic acid dimers is deter...
The phenomenon of solid-state proton migration within molecular complexes containing short hydrogen ...
The phenomenon of solid-state proton migration within molecular complexes containing short hydrogen ...
Taking the example of vibrational-assisted concerted proton exchange in cyclic (HF)n (n) 4, 5) oligo...
The molecular complex between 3,5-dinitrobenzoic acid and nicotinic acid (35DBNA) has been studied b...
Combination of comprehensive investigations of the spin-lattice relaxation rate of proton and low te...
Seven multi-component molecular crystals containing O–H⋯O/O+–H⋯O− and N+–H⋯O− short strong hydrogen ...
We compare results from single crystal X-ray diffraction and FTIR spectroscopy to elucidate the natu...