Supramolecular strategy was employed to achieve the highest nuclearity Co(II) cluster exhibiting spin-crossover (SCO) behavior. Magnetic susceptibility characterization of the Co<sub>4</sub><sup>II</sup> complex shows that two different spin-transition processes occur. The SCO behavior is directed by the partially deprotonated polydentate ligand, which favors the structural distortion required by the spin transition
Spin-crossover (SCO) was studied in [Co(L)2](CF3SO3)2, where L stands for diamagnetic 2,2′:6′,2′′-te...
The spin transition of the [Co(terpy)2]2+ complex (terpy = 2,2':6',2″-terpyridine) is analysed based...
The incorporation of TCNQ˙− (7,7,8,8-tetracyanoquinodimethane) radicals as counterions for the spin-...
Supramolecular strategy was employed to achieve the highest nuclearity Co(II) cluster exhibiting sp...
The on-off switching of spin-crossover (SCO) and single-molecule magnetism (SMM) remains highly attr...
The six-coordinate cobalt(II) complex of formula [Co(tppz)<sub>2</sub>](tcm)<sub>2</sub> exhibits...
All in a spin: A cobalt(II) coordination polymer has a highly cooperative spin-crossover (SCO) behav...
Triply switchable [Co<sup>II</sup>(dpzca)<sub>2</sub>] shows an abrupt, reversible, and hysteretic s...
Encasing the classic spin-crossover (SCO) complex cation [Co(terpy)2]2+ in different anionic supramo...
Encasing the classic spin-crossover (SCO) complex cation [Co(terpy)(2)](2+) in different anionic sup...
Cooperative spin crossover transitions with thermal hysteresis loops are rarely observed in cobalt(...
Two solvated cobalt(ii) terpyridine complexes, [Co(MeO-terpy)2](BF4)2·H2O (1·H2O) and [Co(MeO-terpy)...
Whereas there are hundreds of known iron(II) spin-crossover compounds, only a handful of cobalt(II) ...
International audienceThe spin crossover (SCO) transition is investigated in two molecular Co 2+ bis...
The crystal structures of a series of cobalt(II) molecular complexes, [Co(PM-L)2(NCS)2] [PM = N-2-py...
Spin-crossover (SCO) was studied in [Co(L)2](CF3SO3)2, where L stands for diamagnetic 2,2′:6′,2′′-te...
The spin transition of the [Co(terpy)2]2+ complex (terpy = 2,2':6',2″-terpyridine) is analysed based...
The incorporation of TCNQ˙− (7,7,8,8-tetracyanoquinodimethane) radicals as counterions for the spin-...
Supramolecular strategy was employed to achieve the highest nuclearity Co(II) cluster exhibiting sp...
The on-off switching of spin-crossover (SCO) and single-molecule magnetism (SMM) remains highly attr...
The six-coordinate cobalt(II) complex of formula [Co(tppz)<sub>2</sub>](tcm)<sub>2</sub> exhibits...
All in a spin: A cobalt(II) coordination polymer has a highly cooperative spin-crossover (SCO) behav...
Triply switchable [Co<sup>II</sup>(dpzca)<sub>2</sub>] shows an abrupt, reversible, and hysteretic s...
Encasing the classic spin-crossover (SCO) complex cation [Co(terpy)2]2+ in different anionic supramo...
Encasing the classic spin-crossover (SCO) complex cation [Co(terpy)(2)](2+) in different anionic sup...
Cooperative spin crossover transitions with thermal hysteresis loops are rarely observed in cobalt(...
Two solvated cobalt(ii) terpyridine complexes, [Co(MeO-terpy)2](BF4)2·H2O (1·H2O) and [Co(MeO-terpy)...
Whereas there are hundreds of known iron(II) spin-crossover compounds, only a handful of cobalt(II) ...
International audienceThe spin crossover (SCO) transition is investigated in two molecular Co 2+ bis...
The crystal structures of a series of cobalt(II) molecular complexes, [Co(PM-L)2(NCS)2] [PM = N-2-py...
Spin-crossover (SCO) was studied in [Co(L)2](CF3SO3)2, where L stands for diamagnetic 2,2′:6′,2′′-te...
The spin transition of the [Co(terpy)2]2+ complex (terpy = 2,2':6',2″-terpyridine) is analysed based...
The incorporation of TCNQ˙− (7,7,8,8-tetracyanoquinodimethane) radicals as counterions for the spin-...