The recent IUPAC recommendation on the definition of hydrogen bonding points out that directionality is a defining characteristic of a hydrogen bond and the angle a X-H-Y is generally linear or 180(ay). It also suggests that the X-Hai-Y angle be greater than 110(ay) for an interaction to be characterized as a hydrogen bond but does not provide any rationale for the same. This article reports a rationale for limiting the angle, based on the electron density topology using the quantum theory of atoms in molecules. Electron density topology for common hydrogen bond donors HF, HCl, HBr, HNC, HCN and HCCH are reported in this work. These calculations lead to an interesting observation that the atomic basins of H atom in all these donor molecules...
Atoms in Molecules (AIM) theory is routinely used to assess hydrogen bond formation; however its str...
Atoms in Molecules (AIM) theory is routinely used to assess hydrogen bond formation; however its str...
It is shown that the electron density at the hydrogen bond critical point increases approximately li...
ABSTRACT: Atoms in Molecules (AIM) theory is routinely used to assess hydrogen bond formation; howev...
Resonance Assisted Hydrogen Bonds (RAHBs) are particularly strong H-Bonds (HBs) which are relevant i...
The experimental charge density method has been employed to provide a more detailed description of t...
The experimental charge density method has been employed to provide a more detailed description of t...
A set of representative hydrogen bonded dimers has been studied employing density functional theory ...
<p>(a) The use of spherical avoidance volumes prohibits bond angles far from 180°. The C', O, H, and...
Dihydrogen bond or H2 molecule? The central H-H bond in linear H4 can exist in two qualitatively dif...
<p>Hydrogen bonds and their strength were analysed based on their X–H proton–donor bond properties a...
Recently, we defined 'hydrogen-bond radii' for various hydrogen-bond donors, DH where D=F, Cl, Br, C...
Recently, we defined 'hydrogen-bond radii' for various hydrogen-bond donors, DH where D=F, Cl, Br, C...
Atoms in Molecules (AIM) theory is routinely used to assess hydrogen bond formation; however its str...
Recently, we defined ‘hydrogen-bond radii’ for various hydrogen-bond donors, DH where D=F, Cl, Br, C...
Atoms in Molecules (AIM) theory is routinely used to assess hydrogen bond formation; however its str...
Atoms in Molecules (AIM) theory is routinely used to assess hydrogen bond formation; however its str...
It is shown that the electron density at the hydrogen bond critical point increases approximately li...
ABSTRACT: Atoms in Molecules (AIM) theory is routinely used to assess hydrogen bond formation; howev...
Resonance Assisted Hydrogen Bonds (RAHBs) are particularly strong H-Bonds (HBs) which are relevant i...
The experimental charge density method has been employed to provide a more detailed description of t...
The experimental charge density method has been employed to provide a more detailed description of t...
A set of representative hydrogen bonded dimers has been studied employing density functional theory ...
<p>(a) The use of spherical avoidance volumes prohibits bond angles far from 180°. The C', O, H, and...
Dihydrogen bond or H2 molecule? The central H-H bond in linear H4 can exist in two qualitatively dif...
<p>Hydrogen bonds and their strength were analysed based on their X–H proton–donor bond properties a...
Recently, we defined 'hydrogen-bond radii' for various hydrogen-bond donors, DH where D=F, Cl, Br, C...
Recently, we defined 'hydrogen-bond radii' for various hydrogen-bond donors, DH where D=F, Cl, Br, C...
Atoms in Molecules (AIM) theory is routinely used to assess hydrogen bond formation; however its str...
Recently, we defined ‘hydrogen-bond radii’ for various hydrogen-bond donors, DH where D=F, Cl, Br, C...
Atoms in Molecules (AIM) theory is routinely used to assess hydrogen bond formation; however its str...
Atoms in Molecules (AIM) theory is routinely used to assess hydrogen bond formation; however its str...
It is shown that the electron density at the hydrogen bond critical point increases approximately li...