Spin crossover (SCO) molecules are promising bi-stable magnetic switches with applications in molecular spintronics. However, little is known about the switching effects of a single SCO molecule when it is confined between two metal electrodes. Here we examine the switching properties of a [Fe(III)(EtOSalPet )(NCS)] SCO molecule that is specifically tailored for surface deposition and binding to only one gold electrode in a nanogap device. Temperature dependent conductivity measurements on SCO molecule containing electromigrated gold break junctions show voltage independent telegraphic-like switching between two resistance states at temperature below 200 K. The transition temperature is very different from the transition temperature of 83 K...
International audienceThe active control of a molecular spin represents one of the main challenges i...
Spin crossover complexes are among the most studied classes of molecular switches and have attracted...
International audienceWe demonstrate, based on low-temperature scanning tunneling microscopy (STM) a...
Herein, we report the first room temperature switchable Fe(iii) molecular spin crossover (SCO) tunne...
We investigate if the functionality of spin crossover molecules is preserved when they are assembled...
Spin-crossover (SCO) molecules are versatile magnetic switches with applications in molecular electr...
A nanoscale molecular switch can be used to store information in a single molecule. Although the swi...
Controlling the spin of electrons in nanoscale electronic devices is one of the most promising topic...
International audienceRecently, nanoscale spin-crossover (SCO) particles have been the subject of gr...
Spin crossover (SCO) molecules form a significant class of materials for which the magnetic structur...
We study the switching behavior of two spin-crossover molecules residing in a nanojunction device co...
Controlling the spin of electrons in nanoscale electronic devices is one of the most promising topic...
Molecular switches and sensors are useful for their ability to monitor change and respond by deliver...
We investigate transport through mechanically triggered single-molecule switches that are based on t...
Spin-crossover complexes embedded in nanodevices experience effects that are absent in the bulk that...
International audienceThe active control of a molecular spin represents one of the main challenges i...
Spin crossover complexes are among the most studied classes of molecular switches and have attracted...
International audienceWe demonstrate, based on low-temperature scanning tunneling microscopy (STM) a...
Herein, we report the first room temperature switchable Fe(iii) molecular spin crossover (SCO) tunne...
We investigate if the functionality of spin crossover molecules is preserved when they are assembled...
Spin-crossover (SCO) molecules are versatile magnetic switches with applications in molecular electr...
A nanoscale molecular switch can be used to store information in a single molecule. Although the swi...
Controlling the spin of electrons in nanoscale electronic devices is one of the most promising topic...
International audienceRecently, nanoscale spin-crossover (SCO) particles have been the subject of gr...
Spin crossover (SCO) molecules form a significant class of materials for which the magnetic structur...
We study the switching behavior of two spin-crossover molecules residing in a nanojunction device co...
Controlling the spin of electrons in nanoscale electronic devices is one of the most promising topic...
Molecular switches and sensors are useful for their ability to monitor change and respond by deliver...
We investigate transport through mechanically triggered single-molecule switches that are based on t...
Spin-crossover complexes embedded in nanodevices experience effects that are absent in the bulk that...
International audienceThe active control of a molecular spin represents one of the main challenges i...
Spin crossover complexes are among the most studied classes of molecular switches and have attracted...
International audienceWe demonstrate, based on low-temperature scanning tunneling microscopy (STM) a...