The chirality of molecules expresses itself, for example, in the fact that a solution of a chiral molecule rotates the plane of linear polarised light. The underlying molecular property is the optical rotatory power (ORP) tensor, which according to time-dependent perturbation theory can be calculated as mixed linear response functions of the electric and magnetic dipole moment operators. Applying a canonical transformation of the Hamiltonian, which reformulates the magnetic dipole moment operator in terms of the operator for the torque acting on the electrons, the ORP of a molecule can be partitioned into atomic and group contributions. In the present work, we investigate the transferability of such individual contributions in a series of s...
Optical rotations and rotatory strengths are calculated for achiral, conjugated hydrocarbons with th...
In this paper, both Hartree-Fock (HF) and density functional theory (DFT) methods have been used to...
In this article, we present the so far most extended investigation of the calculation of the couplin...
The chirality of molecules expresses itself, for example, in the fact that a solution of a chiral mo...
We applied a methodology capable of resolving the optical rotatory power into atomic contributions. ...
An additive scheme for resolving average optical rotatory power of a molecule into atomic contributi...
A scheme for resolving average optical rotatory power of a molecule into atomic contributions, appli...
An additive scheme for resolving average optical rotatory power of a molecule into atomic contributi...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
Optical rotations and rotatory strengths are calculated for achiral, conjugated hydrocarbons with th...
In this paper, both Hartree-Fock (HF) and density functional theory (DFT) methods have been used to...
In this article, we present the so far most extended investigation of the calculation of the couplin...
The chirality of molecules expresses itself, for example, in the fact that a solution of a chiral mo...
We applied a methodology capable of resolving the optical rotatory power into atomic contributions. ...
An additive scheme for resolving average optical rotatory power of a molecule into atomic contributi...
A scheme for resolving average optical rotatory power of a molecule into atomic contributions, appli...
An additive scheme for resolving average optical rotatory power of a molecule into atomic contributi...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
The electric dipole–magnetic dipole polarizability tensor κ′, introduced to interpret the optical ac...
Optical rotations and rotatory strengths are calculated for achiral, conjugated hydrocarbons with th...
In this paper, both Hartree-Fock (HF) and density functional theory (DFT) methods have been used to...
In this article, we present the so far most extended investigation of the calculation of the couplin...