We provide a simple procedure for using inexpensive ab initio calculations to compute exchange coupling constants, J(AB), for multiradical molecules containing both an arbitrary number of radical sites and an arbitrary number of unpaired electrons. For a system comprised of 2M unpaired electrons, one needs only to compute states having the Ŝ(z) quantum number M - 1. Conveniently, these are precisely the states that are accessed by the family of single spin-flip methods. Building an effective Hamiltonian with these states allows one to extract all of the J(AB) constants in the molecule. Unlike approaches based on density functional theory, this procedure relies on neither spin-contaminated states nor nonunique spin-projection formulas. A key...
In the most general case of three electrons in three symmetry unrelated centres with localized magne...
International audienceThe use of broken-symmetry calculations in Kohn–Sham density functional theory...
International audienceThe use of broken-symmetry calculations in Kohn–Sham density functional theory...
We provide a simple procedure for using inexpensive ab initio calculations to compute exchange coupl...
We highlight a simple strategy for computing the magnetic coupling constants, J, for a complex conta...
We highlight a simple strategy for computing the magnetic coupling constants, J, for a complex conta...
We highlight a simple strategy for computing the magnetic coupling constants, J, for a complex conta...
Exchange spin coupling is usually evaluated in quantum chemistry from the energy difference between ...
The spin of an electron often misleadingly interpreted as the classical rotationof a particle. The q...
The spin of an electron often misleadingly interpreted as the classical rotationof a particle. The q...
This work studies the ability of the two-center local spin quantities, provided by the partitioning ...
The foundations and limits of S=1/2 and S=1 spin Hamiltonians for systems with two unpaired electron...
New method to eliminate the spin-contamination in broken symmetry density functional theory (BS DFT)...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
We present a systematic derivation of effective lattice spin Hamiltonians derived from a rotationall...
In the most general case of three electrons in three symmetry unrelated centres with localized magne...
International audienceThe use of broken-symmetry calculations in Kohn–Sham density functional theory...
International audienceThe use of broken-symmetry calculations in Kohn–Sham density functional theory...
We provide a simple procedure for using inexpensive ab initio calculations to compute exchange coupl...
We highlight a simple strategy for computing the magnetic coupling constants, J, for a complex conta...
We highlight a simple strategy for computing the magnetic coupling constants, J, for a complex conta...
We highlight a simple strategy for computing the magnetic coupling constants, J, for a complex conta...
Exchange spin coupling is usually evaluated in quantum chemistry from the energy difference between ...
The spin of an electron often misleadingly interpreted as the classical rotationof a particle. The q...
The spin of an electron often misleadingly interpreted as the classical rotationof a particle. The q...
This work studies the ability of the two-center local spin quantities, provided by the partitioning ...
The foundations and limits of S=1/2 and S=1 spin Hamiltonians for systems with two unpaired electron...
New method to eliminate the spin-contamination in broken symmetry density functional theory (BS DFT)...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
We present a systematic derivation of effective lattice spin Hamiltonians derived from a rotationall...
In the most general case of three electrons in three symmetry unrelated centres with localized magne...
International audienceThe use of broken-symmetry calculations in Kohn–Sham density functional theory...
International audienceThe use of broken-symmetry calculations in Kohn–Sham density functional theory...