International audienceThe hexacyanometallate family is well known in transition metal chemistry because the remarkable electronic delocalization along the metal-cyano-metal bond can be tuned in order to design systems that undergo a reversible and controlled change of their physical properties. We have been working for few years on the description of the molecular and electronic structure of materials formed with [Fe(CN)$_6$]$^{n-}$ building blocks and actinide ions (An = Th, U, Np, Pu, Am) and have compared these new materials to those obtained with lanthanide cations at oxidation state +III. In order to evaluate the influence of the actinide coordination polyhedron on the three-dimensional molecular structure, both atomic number and forma...
The contribution reports a structure investigation on the hexacyanoferrate-(II) and (III) complexes ...
This chapter focuses on recent computational studies of the electronic structure and bonding in mole...
Early actinides (U, Np, Pu, Am) show a particular linear bond actinyl-type structure in their highes...
International audienceThe hexacyanometallate family is well known in transition metal chemistry beca...
International audienceThe hexacyanometallate family is well known in transition metal chemistry beca...
International audienceThe hexacyanometallate family is well known in transition metal chemistry beca...
The hexacyanometallate family is well known in transition metal chemistry because the remarkable ele...
The electronic properties of actinide cations are of fundamental interest to describe intramolecular...
The electronic properties of actinide cations are of fundamental interest to describe intramolecular...
Metal hexacyanoferrates are well known molecular solids for a large variety of cations, although ver...
Metal hexacyanoferrates are well known molecular solids for a large variety of cations, although ver...
Metal hexacyanoferrates are well known molecular solids for a large variety of cations, although ver...
Metal hexacyanoferrates are well known molecular solids for a large variety of cations, although ver...
Metal hexacyanoferrates are well known molecular solids for a large variety of cations, although ver...
Metal hexacyanoferrates are well known molecular solids for a large variety of cations, although ver...
The contribution reports a structure investigation on the hexacyanoferrate-(II) and (III) complexes ...
This chapter focuses on recent computational studies of the electronic structure and bonding in mole...
Early actinides (U, Np, Pu, Am) show a particular linear bond actinyl-type structure in their highes...
International audienceThe hexacyanometallate family is well known in transition metal chemistry beca...
International audienceThe hexacyanometallate family is well known in transition metal chemistry beca...
International audienceThe hexacyanometallate family is well known in transition metal chemistry beca...
The hexacyanometallate family is well known in transition metal chemistry because the remarkable ele...
The electronic properties of actinide cations are of fundamental interest to describe intramolecular...
The electronic properties of actinide cations are of fundamental interest to describe intramolecular...
Metal hexacyanoferrates are well known molecular solids for a large variety of cations, although ver...
Metal hexacyanoferrates are well known molecular solids for a large variety of cations, although ver...
Metal hexacyanoferrates are well known molecular solids for a large variety of cations, although ver...
Metal hexacyanoferrates are well known molecular solids for a large variety of cations, although ver...
Metal hexacyanoferrates are well known molecular solids for a large variety of cations, although ver...
Metal hexacyanoferrates are well known molecular solids for a large variety of cations, although ver...
The contribution reports a structure investigation on the hexacyanoferrate-(II) and (III) complexes ...
This chapter focuses on recent computational studies of the electronic structure and bonding in mole...
Early actinides (U, Np, Pu, Am) show a particular linear bond actinyl-type structure in their highes...