A correlation of the structural data on 15 hydrates obtained by x-ray diffraction, neutron diffraction, and proton magnetic resonance reveals that when a water molecule is hydrogen bonded into a crystal structure and the angle subtended at the donor water oxygen by the acceptor atoms deviates from the vapor H-O-H angle, bent hydrogen bonds are formed in preference to distortion of the H-O-H angle. Theoretical justification for this result is obtained from energy considerations by calculating the energy of formation of bent hydrogen bonds on the basis of the Lippincott-Schroeder potential function model for the hydrogen bond and the energy of deformation of the H-O-H angle from spectroscopic force constants
The determination of crystal structures provides important information on the geometry of species co...
The determination of crystal structures provides important information on the geometry of species co...
Water is the most studied molecule in the history of scientific research, and yet much remains unkno...
A correlation of the structural data on 15 hydrates obtained by x-ray diffraction, neutron diffracti...
A correlation of the structural data on IS hydrates obtained by x-ray diffraction, neutron diffracti...
Neutron diffraction data show that shorter hydrogen bonds are less bent on the average than longer o...
The hydrogen bond network is responsible for the exceptional physical and chemical properties of wat...
Hydrogen bonds profoundly influence the architecture and activity of biological macromolecules. Deep...
Hydrogen bonds profoundly influence the architecture and activity of biological macromolecules. Deep...
The geometry of hydrogen bonds in the crystal structures from the Cambridge Structural Database and ...
The geometry of hydrogen bonds in the crystal structures from the Cambridge Structural Database and ...
The geometry of hydrogen bonds in the crystal structures from the Cambridge Structural Database and ...
CNDO/2 MO calculations have been carried out to investigate the effect of distortions of the hydroge...
The 'hydrogen-bond interaction can be studied using a variety of spectroscopic and crystallographic ...
The 'hydrogen-bond interaction can be studied using a variety of spectroscopic and crystallographic ...
The determination of crystal structures provides important information on the geometry of species co...
The determination of crystal structures provides important information on the geometry of species co...
Water is the most studied molecule in the history of scientific research, and yet much remains unkno...
A correlation of the structural data on 15 hydrates obtained by x-ray diffraction, neutron diffracti...
A correlation of the structural data on IS hydrates obtained by x-ray diffraction, neutron diffracti...
Neutron diffraction data show that shorter hydrogen bonds are less bent on the average than longer o...
The hydrogen bond network is responsible for the exceptional physical and chemical properties of wat...
Hydrogen bonds profoundly influence the architecture and activity of biological macromolecules. Deep...
Hydrogen bonds profoundly influence the architecture and activity of biological macromolecules. Deep...
The geometry of hydrogen bonds in the crystal structures from the Cambridge Structural Database and ...
The geometry of hydrogen bonds in the crystal structures from the Cambridge Structural Database and ...
The geometry of hydrogen bonds in the crystal structures from the Cambridge Structural Database and ...
CNDO/2 MO calculations have been carried out to investigate the effect of distortions of the hydroge...
The 'hydrogen-bond interaction can be studied using a variety of spectroscopic and crystallographic ...
The 'hydrogen-bond interaction can be studied using a variety of spectroscopic and crystallographic ...
The determination of crystal structures provides important information on the geometry of species co...
The determination of crystal structures provides important information on the geometry of species co...
Water is the most studied molecule in the history of scientific research, and yet much remains unkno...