The fabrication of large-area vertical junctions with a molecular spin-crossover complex displaying concerted changes of spin degrees of freedom and charge-transport properties is reported. Fabricated devices allow spin-state switching in the spin-crossover layer to be triggered and probed by optical means, while detecting associated changes in electrical resistance in the junctions
Inspired by the proposal that single molecules will be functional elements of future nanoelectronic ...
Molecular spintronics seeks to use single or few molecules as functional building blocks for spintro...
Molecular junctions are important because their operating mechanisms are complementary to semiconduc...
International audienceThe fabrication of large-area vertical junctions with a molecular spin-crossov...
We investigate transport through mechanically triggered single-molecule switches that are based on t...
Voltage-controlled nonvolatile isothermal spin state switching of a [Fe{H2B(pz)2}2(bipy)] (pz = tris...
In this paper, we present a comprehensive review of research on electrical and charge transport prop...
Voltage-controlled nonvolatile isothermal spin state switching of a [Fe{H2B(pz)2}2(bipy)] (pz=tris(p...
A nanoscale molecular switch can be used to store information in a single molecule. Although the swi...
Fabrication of molecular spin devices with ferromagnetic electrodes coupled with a high spin molecul...
Resistance switching in multilayer structures are typically based on materials possessing ferroic or...
We study the switching behavior of two spin-crossover molecules residing in a nanojunction device co...
The quest for a spin-polarized organic light emitting diode (spin-OLED) is a common goal in the emer...
Electric control of spins has been a longstanding goal in the field of solid state physics due to th...
Spin crossover complexes are among the most studied classes of molecular switches and have attracted...
Inspired by the proposal that single molecules will be functional elements of future nanoelectronic ...
Molecular spintronics seeks to use single or few molecules as functional building blocks for spintro...
Molecular junctions are important because their operating mechanisms are complementary to semiconduc...
International audienceThe fabrication of large-area vertical junctions with a molecular spin-crossov...
We investigate transport through mechanically triggered single-molecule switches that are based on t...
Voltage-controlled nonvolatile isothermal spin state switching of a [Fe{H2B(pz)2}2(bipy)] (pz = tris...
In this paper, we present a comprehensive review of research on electrical and charge transport prop...
Voltage-controlled nonvolatile isothermal spin state switching of a [Fe{H2B(pz)2}2(bipy)] (pz=tris(p...
A nanoscale molecular switch can be used to store information in a single molecule. Although the swi...
Fabrication of molecular spin devices with ferromagnetic electrodes coupled with a high spin molecul...
Resistance switching in multilayer structures are typically based on materials possessing ferroic or...
We study the switching behavior of two spin-crossover molecules residing in a nanojunction device co...
The quest for a spin-polarized organic light emitting diode (spin-OLED) is a common goal in the emer...
Electric control of spins has been a longstanding goal in the field of solid state physics due to th...
Spin crossover complexes are among the most studied classes of molecular switches and have attracted...
Inspired by the proposal that single molecules will be functional elements of future nanoelectronic ...
Molecular spintronics seeks to use single or few molecules as functional building blocks for spintro...
Molecular junctions are important because their operating mechanisms are complementary to semiconduc...