We investigate if the functionality of spin crossover molecules is preserved when they are assembled into an interfacial device structure. Specifically, we prepare and investigate gold nanoparticle arrays, into which room-temperature spin crossover molecules are introduced, more precisely, [Fe(AcS-BPP)(2)](ClO4)(2), where AcS-BPP = (S)-(4-{[2,6-(dipyrazol-1-yl)pyrid-4-yl]ethynyl}phenyl)ethanethioate (in short, Fe(S-BPP)(2)). We combine three complementary experiments to characterize the molecule-nanoparticle structure in detail. Temperature-dependent Raman measurements provide direct evidence for a (partial) spin transition in the Fe(S-BPP)(2)-based arrays. This transition is qualitatively confirmed by magnetization measurements. Finally, c...
Controlling the spin of electrons in nanoscale electronic devices is one of the most promising topic...
One promising route toward encoding information is to utilize the two stable electronic states of a ...
International audienceRecently, nanoscale spin-crossover (SCO) particles have been the subject of gr...
We investigate if the functionality of spin crossover molecules is preserved when they are assembled...
Spin crossover (SCO) molecules are promising bi-stable magnetic switches with applications in molecu...
International audienceA main goal of molecular electronics is to relate the performance of devices t...
A simple protocol to prepare core-shell gold@spin-crossover (Au@SCO) nanoparticles (NPs) based on th...
International audienceUnderstanding the properties of spin-crossover molecules in direct contact wit...
Spin-crossover (SCO) active iron(II) complexes are an integral class of switchable and bistable mole...
A nanoscale molecular switch can be used to store information in a single molecule. Although the swi...
Herein, we report the first room temperature switchable Fe(iii) molecular spin crossover (SCO) tunne...
We prepare and investigate two-dimensional (2D) single-layer arrays and multilayered networks of gol...
Spin-crossover (SCO) active iron(II) complexes are an integral class of switchable and bistable mole...
Spin-crossover (SCO) molecules are versatile magnetic switches with applications in molecular electr...
Controlling the spin of electrons in nanoscale electronic devices is one of the most promising topic...
Controlling the spin of electrons in nanoscale electronic devices is one of the most promising topic...
One promising route toward encoding information is to utilize the two stable electronic states of a ...
International audienceRecently, nanoscale spin-crossover (SCO) particles have been the subject of gr...
We investigate if the functionality of spin crossover molecules is preserved when they are assembled...
Spin crossover (SCO) molecules are promising bi-stable magnetic switches with applications in molecu...
International audienceA main goal of molecular electronics is to relate the performance of devices t...
A simple protocol to prepare core-shell gold@spin-crossover (Au@SCO) nanoparticles (NPs) based on th...
International audienceUnderstanding the properties of spin-crossover molecules in direct contact wit...
Spin-crossover (SCO) active iron(II) complexes are an integral class of switchable and bistable mole...
A nanoscale molecular switch can be used to store information in a single molecule. Although the swi...
Herein, we report the first room temperature switchable Fe(iii) molecular spin crossover (SCO) tunne...
We prepare and investigate two-dimensional (2D) single-layer arrays and multilayered networks of gol...
Spin-crossover (SCO) active iron(II) complexes are an integral class of switchable and bistable mole...
Spin-crossover (SCO) molecules are versatile magnetic switches with applications in molecular electr...
Controlling the spin of electrons in nanoscale electronic devices is one of the most promising topic...
Controlling the spin of electrons in nanoscale electronic devices is one of the most promising topic...
One promising route toward encoding information is to utilize the two stable electronic states of a ...
International audienceRecently, nanoscale spin-crossover (SCO) particles have been the subject of gr...