International audienceWe analyzed the size effect on a first-order spin transition governed by elastic interactions. This study was performed in the framework of a nonextensive thermodynamic core-shell model. When decreasing the particle size, differences in surface energies between the two phases lead to the shrinking of the thermal hysteresis width, the lowering of the transition temperature, and the increase of residual fractions at low temperature, in good agreement with recent experimental observations on spin transition nanomaterials. On the other hand, a modification of the particle-matrix interface may allow for the existence of the hysteresis loop even at very low sizes. In addition, an unexpected reopening of the hysteresis, when ...
To investigate the spin state switching mechanism in spin crossover (SCO) nanoparticles, a...
There are currently extended experimental and theoretical developments of spin crossover nanomateria...
International audienceIn the present work, numerical simulations based on a new algorithm speci c fo...
International audienceThe Ising-like model is used to simulate the thermal behavior of a 2D spin cro...
We analyze the size effect on spin-crossover transition nanoparticles in a 2D Ising-like model subje...
International audienceUnderstanding how surrounding environments act on the functional properties of...
The recently developedmechanoelastic model is applied to characterize the thermal transition in spin...
International audienceIn this report first we show, in a framework of the Ising-like mod...
The recently obtained spin-crossover nanoparticles are possible candidates for applications in the r...
This contribution, motivated by an experimental study of the influence of long-range interactions on...
We investigated the thermal transition of coated nano-particles of the title compound, on ...
Cooperative spin crossover (SCO) materials exhibit first-order phase transitions in the solid state,...
International audienceTo investigate the spin state switching mechanism in spin crossover (SCO) nano...
The temperature driven phase transition occurring in spin crossover nanochains has been studied by a...
To investigate the spin state switching mechanism in spin crossover (SCO) nanoparticles, a...
There are currently extended experimental and theoretical developments of spin crossover nanomateria...
International audienceIn the present work, numerical simulations based on a new algorithm speci c fo...
International audienceThe Ising-like model is used to simulate the thermal behavior of a 2D spin cro...
We analyze the size effect on spin-crossover transition nanoparticles in a 2D Ising-like model subje...
International audienceUnderstanding how surrounding environments act on the functional properties of...
The recently developedmechanoelastic model is applied to characterize the thermal transition in spin...
International audienceIn this report first we show, in a framework of the Ising-like mod...
The recently obtained spin-crossover nanoparticles are possible candidates for applications in the r...
This contribution, motivated by an experimental study of the influence of long-range interactions on...
We investigated the thermal transition of coated nano-particles of the title compound, on ...
Cooperative spin crossover (SCO) materials exhibit first-order phase transitions in the solid state,...
International audienceTo investigate the spin state switching mechanism in spin crossover (SCO) nano...
The temperature driven phase transition occurring in spin crossover nanochains has been studied by a...
To investigate the spin state switching mechanism in spin crossover (SCO) nanoparticles, a...
There are currently extended experimental and theoretical developments of spin crossover nanomateria...
International audienceIn the present work, numerical simulations based on a new algorithm speci c fo...