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Enhancing Magnetic Cooperativity in Fe(II) Triazole-based Spin-crossover Nanoparticles by Pluronic Matrix Confinement
Giorgio Zoppellaro1, Klára Čépe1, Claudia Aparicio1
1Regional Centre of Advanced Technologies and Materials, Faculty of Science, Palacky University, Ŝlechtitelů 27, 78371, Olomouc, Czech Republic.
Abstract:
Polymeric one-dimensional (1D) triazole-based FeII spin crossover nanoparticles have been entrapped in pluronic P123 matrix, forming nanorods in which the interaction between host (P123) and guest (FeII complex) promoted high reproducibility of the spin crossover process, significant shifts of the transition temperatures (T↑=370 K, T↓=338 K for the P123 entrapped material vs the literature values of T↑=358 K, T↓=341 K for the neat/polymer free system) and larger magnetic hysteresis width.
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