We report a broadband 1H NMR study of the spin dynamics of coated maghemite and gold-maghemite hybrid nanostructures with two different geometries, namely dimers and core-shells. All the samples have a superparamagnetic behavior, displaying a blocking temperature (TB ∼ 80 K (maghemite), ∼105 K (dimer), ∼150 K (core-shell)), and the magnetization reversal time follows the Vogel-Fulcher law. We observed three different anomalies in 1H NMR T1-1 versus T that decrease in amplitude when increasing the applied magnetic field. We suggest that the anomalies are related to three distinct system dynamics: molecular rotations of the organic groups (240 < T < 270 K), superparamagnetic spin blockage (100 < T < 150 K), and surface-core spin dynamics (T < 25 K). By fitting the T1-1 data with a heuristic model, we achieved a good agreement with magnetic relaxation data and literature values for methyl group rotation frequencies. (Graph Presented).

Spin dynamics in hybrid iron oxide-gold nanostructures

PINEIDER, FRANCESCO;
2015-01-01

Abstract

We report a broadband 1H NMR study of the spin dynamics of coated maghemite and gold-maghemite hybrid nanostructures with two different geometries, namely dimers and core-shells. All the samples have a superparamagnetic behavior, displaying a blocking temperature (TB ∼ 80 K (maghemite), ∼105 K (dimer), ∼150 K (core-shell)), and the magnetization reversal time follows the Vogel-Fulcher law. We observed three different anomalies in 1H NMR T1-1 versus T that decrease in amplitude when increasing the applied magnetic field. We suggest that the anomalies are related to three distinct system dynamics: molecular rotations of the organic groups (240 < T < 270 K), superparamagnetic spin blockage (100 < T < 150 K), and surface-core spin dynamics (T < 25 K). By fitting the T1-1 data with a heuristic model, we achieved a good agreement with magnetic relaxation data and literature values for methyl group rotation frequencies. (Graph Presented).
2015
Orlando, Tomas; Capozzi, A.; Umut, E.; Bordonali, L.; Mariani, M.; Galinetto, P.; Pineider, Francesco; Innocenti, C.; Masala, P.; Tabak, F.; Scavini, M.; Santini, P.; Corti, M.; Sangregorio, C.; Ghigna, P.; Lascialfari, A.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11568/776646
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