The impact of the environment onto the geometry of hydrogen bonds can be critically important for the properties of the questioned molecular system. The paper reports on the design of calculation approaches capable to simulate the effect of aprotic polar solvents on the geometric and NMR parameters of intermolecular hydrogen bonds. A hydrogen fluoride and pyridine complex has been used as the main model system because the experimental estimates of these parameters are available for it. Specifically, F-H, F center dot center dot center dot N, and H-N distances, the values of N-15 NMR shift, and spin-spin coupling constants (1)J((FH)-F-19-H-1), (1h)J((HN)-H-1-N-15), and (2h)J((FN)-F-19-N-15) have been analyzed. Calculation approaches based on...
This paper presents a study on the effects of solvents on nuclear magnetic shielding parameters deri...
A novel series of hydrogen-bonded solid 1:1 acid-base complexes of N-15-labeled 2,4,6-trimethylpyrid...
Author Institution: Department of Chemistry, Youngstown State University,; Youngstown, Ohio 44555;...
Unambiguous evidence for the engagement of CF3 group in N-H center dot center dot center dot F-C hyd...
The location of a mobile proton in acid-base complexes in aprotic solvents can be predicted using a ...
The location of a mobile proton in acid-base complexes in aprotic solvents can be predicted using a ...
The location of a mobile proton in acid-base complexes in aprotic solvents can be predicted using a ...
Can the geometry of an acid-base complex in solution be reproduced in calculations using an implicit...
The response of the geometric and NMR properties of molecular systems to an external electric field ...
The response of the geometric and NMR properties of molecular systems to an external electric field ...
The response of the geometric and NMR properties of molecular systems to an external electric field ...
The question as to whether the CH⋯O interaction constitutes a true H-bond is examined from the pers...
Advanced multidimensional NMR techniques have been employed to investigate the intramolecular hydrog...
Hydrogen bond geometries in the proton-bound homodimers of quinoline and acridine derivatives in an ...
The computational method for estimating the geometry of two coupled hydrogen bonds with geometries c...
This paper presents a study on the effects of solvents on nuclear magnetic shielding parameters deri...
A novel series of hydrogen-bonded solid 1:1 acid-base complexes of N-15-labeled 2,4,6-trimethylpyrid...
Author Institution: Department of Chemistry, Youngstown State University,; Youngstown, Ohio 44555;...
Unambiguous evidence for the engagement of CF3 group in N-H center dot center dot center dot F-C hyd...
The location of a mobile proton in acid-base complexes in aprotic solvents can be predicted using a ...
The location of a mobile proton in acid-base complexes in aprotic solvents can be predicted using a ...
The location of a mobile proton in acid-base complexes in aprotic solvents can be predicted using a ...
Can the geometry of an acid-base complex in solution be reproduced in calculations using an implicit...
The response of the geometric and NMR properties of molecular systems to an external electric field ...
The response of the geometric and NMR properties of molecular systems to an external electric field ...
The response of the geometric and NMR properties of molecular systems to an external electric field ...
The question as to whether the CH⋯O interaction constitutes a true H-bond is examined from the pers...
Advanced multidimensional NMR techniques have been employed to investigate the intramolecular hydrog...
Hydrogen bond geometries in the proton-bound homodimers of quinoline and acridine derivatives in an ...
The computational method for estimating the geometry of two coupled hydrogen bonds with geometries c...
This paper presents a study on the effects of solvents on nuclear magnetic shielding parameters deri...
A novel series of hydrogen-bonded solid 1:1 acid-base complexes of N-15-labeled 2,4,6-trimethylpyrid...
Author Institution: Department of Chemistry, Youngstown State University,; Youngstown, Ohio 44555;...