Spin-crossover complexes embedded in nanodevices experience effects that are absent in the bulk that can modulate, quench and even suppress the spin-transition. In this work we explore, by means of state-of-the-art quantum chemistry calculations, different aspects of the integration of SCO molecules on active nanodevices, such as the geometry and energetics of the interaction with the substrate, extension of the charge transfer between the substrate and SCO molecule, impact of the applied external electric field on the spin-transition, and sensitivity of the transport properties on the local conditions of the substrate. We focus on the recently reported encapsulation of Fe(II) spin-crossover complexes in single-walled carbon nanotubes, with...
Fe(phen)2(NCS)2 and Fe{[3,5-dimethylpyrazolyl]3BH}2 samples deposited by thermal evaporation on Cu(1...
Cooperative effects determine the spin state bistability of spin crossover molecules SCMs . Herein,...
Comprendre comment la nanostructuration de composés à conversion de spin (SCO) influence leur compor...
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...
In this paper, we present a comprehensive review of research on electrical and charge transport prop...
Molecular spintronics is an emerging research field exploiting the versatility of organic molecular ...
We investigate transport through mechanically triggered single-molecule switches that are based on t...
Spin‐crossover (SCO) active transition metal complexes are an important class of switchable molecula...
Molecular switches and sensors are useful for their ability to monitor change and respond by deliver...
Understanding how the nanostructuration of spin-crossover compounds (SCO) influences their behavior ...
We study the switching behavior of two spin-crossover molecules residing in a nanojunction device co...
Spin crossover (SCO) molecules are promising bi-stable magnetic switches with applications in molecu...
Molecular spintronics seeks to use single or few molecules as functional building blocks for spintro...
2050-7534In the past few years we have witnessed the spectacular development of nanomaterials of spi...
Fe(phen)2(NCS)2 and Fe{[3,5-dimethylpyrazolyl]3BH}2 samples deposited by thermal evaporation on Cu(1...
Cooperative effects determine the spin state bistability of spin crossover molecules SCMs . Herein,...
Comprendre comment la nanostructuration de composés à conversion de spin (SCO) influence leur compor...
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...
In this paper, we present a comprehensive review of research on electrical and charge transport prop...
Molecular spintronics is an emerging research field exploiting the versatility of organic molecular ...
We investigate transport through mechanically triggered single-molecule switches that are based on t...
Spin‐crossover (SCO) active transition metal complexes are an important class of switchable molecula...
Molecular switches and sensors are useful for their ability to monitor change and respond by deliver...
Understanding how the nanostructuration of spin-crossover compounds (SCO) influences their behavior ...
We study the switching behavior of two spin-crossover molecules residing in a nanojunction device co...
Spin crossover (SCO) molecules are promising bi-stable magnetic switches with applications in molecu...
Molecular spintronics seeks to use single or few molecules as functional building blocks for spintro...
2050-7534In the past few years we have witnessed the spectacular development of nanomaterials of spi...
Fe(phen)2(NCS)2 and Fe{[3,5-dimethylpyrazolyl]3BH}2 samples deposited by thermal evaporation on Cu(1...
Cooperative effects determine the spin state bistability of spin crossover molecules SCMs . Herein,...
Comprendre comment la nanostructuration de composés à conversion de spin (SCO) influence leur compor...