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Photo‐Thermal Switching of Individual Plasmonically Activated Spin Crossover Nanoparticle Imaged by Ultrafast Transmission Electron Microscopy
(Advanced Materials. vol. 33, n° 52, pp. 2105586 (10 p.), 2021-10-03)Article de revue -
Laser‐Driven Transient Phase Oscillations in Individual Spin Crossover Particles
(Small. vol. 19, n° 39, pp. 2303701, 2023)Article de revue -
Time-Resolved Study of the Photoswitching of Gold Nanorods Coated with a Spin-Crossover Compound Shell
(Journal of Physical Chemistry C. vol. 125, n° 41, pp. 22611–22621, 2021)Article de revue -
Interaction entre résonance plasmon de surface et les propriétés de commutation dans des nanoparticules à base de nono-barreau d'or recouvert d'un composé à transition de spin
(Advanced Functional Materials. vol. 30, n° 17, pp. 2000447 (9 p.), 2020-02-27)Article de revue -
Laser‐Driven Transient Phase Oscillations in Individual Spin Crossover Particles
(Small, 2023)Article de revue -
Laser‐Driven Transient Phase Oscillations in Individual Spin Crossover Particles
(Small. vol. 19, n° 39, pp. 2303701, 2023)Article de revue -
Rational Direct Synthesis of RbMnFe Nanoparticles (RbMnFe = RbxMn[Fe(CN)6](2+x)/3·nH2O Prussian Blue Analogue)
(Inorganic Chemistry. vol. 61, n° 6, pp. 2945–2953, 2022)Article de revue -
One-dimensional tunable photonic crystals with spin crossover material for the terahertz range
(Applied Physics Letters. vol. 89, n° 17, pp. 174105, 2006)Article de revue -
Nanoparticles of iron(II) spin-crossover
(Chemical Communications. n° 36, pp. 4327-4329, 2008)Article de revue -
Mechanism for optical switching of the spin crossover [Fe(NH<sub>2</sub>-trz)<sub>3</sub>](Br)<sub>2</sub>·3H<sub>2</sub>O compound at room temperature</strong>
(Physical Chemistry Chemical Physics. vol. 12, n° 12, pp. 3044-3052, 2010)Article de revue