In the past years, the use of highly sensitive silicon microelectromechanical cantilevers has been proposed as a tool to characterize the spin-crossover phenomenon by employing fast optical readout of the motion. In this work, FeII-based spin-crossover nanoparticles of the well-known [Fe(Htrz)2(trz)](BF4) complex wrapped with thin silica shells of different sizes will be studied by means of silicon microresonators. The silica shell will enhance its chemical stability, whereas the low thickness will allow a proper mechanical coupling between the cantilever and the spin-crossover core. To maximize the sensing of the spin-crossover phenomena, different cantilever geometries and flexural modes were employed. In addition, the experimental obse...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
International audienceRecently, nanoscale spin-crossover (SCO) particles have been the subject of gr...
We used a spray-coating process to cover silicon microcantilevers with ca. 33 wt% [Fe(Htrz)2(trz)](B...
In the past years, the use of highly sensitive silicon microelectromechanical cantilevers has been ...
International audienceSilicon MEMS cantilevers coated with a 200 nm thin layer of the molecular spin...
© 2020 American Physical Society. Recent demonstrations of ultracoherent nanomechanical resonators i...
International audience[FeII(Htrz)2(trz)](BF4) spin crossover particles of 85 nm mean size are disper...
International audienceWe used a spray-coating process to cover silicon microcantilevers with ca. 33 ...
Microelectromechanical systems (MEMS) are micrometric devices able to transform a mechanical signal ...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
International audienceRecently, nanoscale spin-crossover (SCO) particles have been the subject of gr...
We used a spray-coating process to cover silicon microcantilevers with ca. 33 wt% [Fe(Htrz)2(trz)](B...
In the past years, the use of highly sensitive silicon microelectromechanical cantilevers has been ...
International audienceSilicon MEMS cantilevers coated with a 200 nm thin layer of the molecular spin...
© 2020 American Physical Society. Recent demonstrations of ultracoherent nanomechanical resonators i...
International audience[FeII(Htrz)2(trz)](BF4) spin crossover particles of 85 nm mean size are disper...
International audienceWe used a spray-coating process to cover silicon microcantilevers with ca. 33 ...
Microelectromechanical systems (MEMS) are micrometric devices able to transform a mechanical signal ...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
International audienceRecently, nanoscale spin-crossover (SCO) particles have been the subject of gr...
We used a spray-coating process to cover silicon microcantilevers with ca. 33 wt% [Fe(Htrz)2(trz)](B...