We report on the Fe17 high-spin molecular cluster and show that this system is an exemplification of nanostructured dipolar magnetism. Each Fe17 molecule, with spin S 35=2 and axial anisotropy as small as D = -0.02 K, is the magnetic unit that can be chemically arranged in different packing crystals while preserving both the spin ground state and anisotropy. For every configuration, molecular spins are correlated only by dipolar interactions. The ensuing interplay between dipolar energy and anisotropy gives rise to macroscopic behaviors ranging from superparamagnetism to long-range magnetic order at temperatures below 1 K
The synthesis, crystal structure, and magnetic characterization of a novel tetranuclear Fe(III) meth...
Magnetic ordering in a high-spin Fe19 magnetic nanomagnetWe report evidence of antiferromagnetic (A...
Implanted muons have been used as a local probe to detect the magnetic ordering in the molecular mag...
We report on the Fe-17 high-spin molecular cluster and show that this system is an exemplification o...
Few examples of magnetic systems displaying a transition to pure dipolar magnetic order are known t...
We report the first example of a transition to long-range magnetic order in a purely dipolarly inter...
Implanted muons have been used as a local probe to detect the magnetic ordering in the molecular mag...
The molecular magnet Hpyr [Fe17 O16 (OH) 12 (py) 12 Br4] Br4 (" Fe17 ") has a well-defined cluster s...
The molecular magnet Hpyr [Fe17 O16 (OH) 12 (py) 12 Br4] Br4 (" Fe17 ") has a well-defined cluster s...
We study the magnetothermal properties of magnetically isotropic high-spin molecular nanomagnets con...
The molecular cluster system [Fe19(metheidi)10(OH)14O6(H2O)12]NO3·24H2O, abbreviated as Fe19, contai...
The molecular magnet Hpyr[Fe 17O16OH12py12Br4Br4] “Fe17” has a well-defined cluster spin ground stat...
The molecular cluster system [Fe19 (metheidi)10 (OH)14O6 (H2O)12 ]NO3·24H2O, abbrevi-ated as Fe19, c...
Molecular clusters of paramagnetic metal ions have been widely investigated as model for magnetism a...
The field of single molecule magnetism remains predicated on super- and double exchange mechanisms t...
The synthesis, crystal structure, and magnetic characterization of a novel tetranuclear Fe(III) meth...
Magnetic ordering in a high-spin Fe19 magnetic nanomagnetWe report evidence of antiferromagnetic (A...
Implanted muons have been used as a local probe to detect the magnetic ordering in the molecular mag...
We report on the Fe-17 high-spin molecular cluster and show that this system is an exemplification o...
Few examples of magnetic systems displaying a transition to pure dipolar magnetic order are known t...
We report the first example of a transition to long-range magnetic order in a purely dipolarly inter...
Implanted muons have been used as a local probe to detect the magnetic ordering in the molecular mag...
The molecular magnet Hpyr [Fe17 O16 (OH) 12 (py) 12 Br4] Br4 (" Fe17 ") has a well-defined cluster s...
The molecular magnet Hpyr [Fe17 O16 (OH) 12 (py) 12 Br4] Br4 (" Fe17 ") has a well-defined cluster s...
We study the magnetothermal properties of magnetically isotropic high-spin molecular nanomagnets con...
The molecular cluster system [Fe19(metheidi)10(OH)14O6(H2O)12]NO3·24H2O, abbreviated as Fe19, contai...
The molecular magnet Hpyr[Fe 17O16OH12py12Br4Br4] “Fe17” has a well-defined cluster spin ground stat...
The molecular cluster system [Fe19 (metheidi)10 (OH)14O6 (H2O)12 ]NO3·24H2O, abbrevi-ated as Fe19, c...
Molecular clusters of paramagnetic metal ions have been widely investigated as model for magnetism a...
The field of single molecule magnetism remains predicated on super- and double exchange mechanisms t...
The synthesis, crystal structure, and magnetic characterization of a novel tetranuclear Fe(III) meth...
Magnetic ordering in a high-spin Fe19 magnetic nanomagnetWe report evidence of antiferromagnetic (A...
Implanted muons have been used as a local probe to detect the magnetic ordering in the molecular mag...