Study of the fast photoswitching of spin crossover nanoparticles outside and inside their thermal hysteresis loop

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Abstract

We have studied the low spin to high spin phase transition induced by nanosecond laser pulses outside and within the thermal hysteresis loop of the [Fe(Htrz)2 trz](BF4)2-H2O spin crossover nanoparticles. We demonstrate that, whatever the temperature of the compound, the photo-switching is achieved in less than 12.5 ns. Outside the hysteresis loop, the photo-induced high spin state remains up to 100 μs and then relaxes. Within the thermal hysteresis loop, the photo-induced high spin state remains as long as the temperature of the sample is kept within the thermal loop. A Raman study indicates that the photo-switching can be completed using single laser pulse excitation. © 2013 American Institute of Physics.

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Gallé, G., Etrillard, C., Degert, J., Guillaume, F., Létard, J. F., & Freysz, E. (2013). Study of the fast photoswitching of spin crossover nanoparticles outside and inside their thermal hysteresis loop. Applied Physics Letters, 102(6). https://doi.org/10.1063/1.4792527

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