Total control over the electronic spin relaxation in molecular nanomagnets is the ultimate goal in the design of new molecules with evermore realizable applications in spin-based devices. For single-ion lanthanide systems, with strong spin-orbit coupling, the potential applications are linked to the energetic structure of the crystal field levels and quantum tunneling within the ground state. Structural engineering of the timescale of these tunneling events via appropriate design of crystal fields represents a fundamental challenge for the synthetic chemist, since tunnel splittings are expected to be suppressed by crystal field environments with sufficiently high-order symmetry. Here, we report the long missing study of the effect of a non-...
We investigate the dynamic susceptibility of Fe4 single-molecule magnets with integer spin (S = 5) i...
The isocarbonyl-ligated metallocene coordination polymers [Cp*2M(μ-OC)W(Cp)(CO)(μ-CO)]∞ were synthes...
<p>Energy barriers to magnetisation reversal (U<sub>eff</sub>) in single-molecule magnets (SMMs) hav...
Total control over the electronic spin relaxation in molecular nanomagnets is the ultimate goal in t...
Single-molecule magnets (SMMs) are regarded as a class of promising materials for spintronic and ult...
© The Royal Society of Chemistry. We report a dysprosium(iii) bis(methanediide) single molecule magn...
Single ion lanthanide organic complexes can provide stable magnetic moments with well defined orient...
Single-ion lanthanide-organic complexes can provide stable magnetic moments with well-defined orien...
Molecular nanomagnets based on mononuclear metal complexes, also known as single-ion magnets (SIMs),...
This article is part of the themed collection: 2021 Chemical Science HOT Article Collection.We repor...
Two isomers of metallofullerene Dy2S@C82 with sulfur-bridged Dy ions exhibit broad magnetic hysteres...
Molecular magnetism is reaching a degree of development that will allow for the rational design of s...
The family of cubic polyoxopalladates encapsulating lanthanide ions [LnPd12(AsPh)8O32]5− where Ln = ...
Magnetic bistability in single-molecule magnets (SMMs) is a potential basis for new types of nanosca...
Replacing a monoanionic cyclopentadienyl (Cp) ligand in dysprosium single-molecule magnets (SMMs) wi...
We investigate the dynamic susceptibility of Fe4 single-molecule magnets with integer spin (S = 5) i...
The isocarbonyl-ligated metallocene coordination polymers [Cp*2M(μ-OC)W(Cp)(CO)(μ-CO)]∞ were synthes...
<p>Energy barriers to magnetisation reversal (U<sub>eff</sub>) in single-molecule magnets (SMMs) hav...
Total control over the electronic spin relaxation in molecular nanomagnets is the ultimate goal in t...
Single-molecule magnets (SMMs) are regarded as a class of promising materials for spintronic and ult...
© The Royal Society of Chemistry. We report a dysprosium(iii) bis(methanediide) single molecule magn...
Single ion lanthanide organic complexes can provide stable magnetic moments with well defined orient...
Single-ion lanthanide-organic complexes can provide stable magnetic moments with well-defined orien...
Molecular nanomagnets based on mononuclear metal complexes, also known as single-ion magnets (SIMs),...
This article is part of the themed collection: 2021 Chemical Science HOT Article Collection.We repor...
Two isomers of metallofullerene Dy2S@C82 with sulfur-bridged Dy ions exhibit broad magnetic hysteres...
Molecular magnetism is reaching a degree of development that will allow for the rational design of s...
The family of cubic polyoxopalladates encapsulating lanthanide ions [LnPd12(AsPh)8O32]5− where Ln = ...
Magnetic bistability in single-molecule magnets (SMMs) is a potential basis for new types of nanosca...
Replacing a monoanionic cyclopentadienyl (Cp) ligand in dysprosium single-molecule magnets (SMMs) wi...
We investigate the dynamic susceptibility of Fe4 single-molecule magnets with integer spin (S = 5) i...
The isocarbonyl-ligated metallocene coordination polymers [Cp*2M(μ-OC)W(Cp)(CO)(μ-CO)]∞ were synthes...
<p>Energy barriers to magnetisation reversal (U<sub>eff</sub>) in single-molecule magnets (SMMs) hav...