Spin fluctuations in the light-induced high spin state of Cobalt valence tautomers
Filippo Caracciolo, Matteo Mannini, Giordano Poneti, Matej, Pregelj, Neic Jan\v{s}a, Denis Ar\v{c}on, Pietro Carretta

TL;DR
This study investigates the magnetic properties and spin dynamics of cobalt valence tautomers, revealing how temperature, pressure, and light irradiation influence their spin states and dynamics, with potential implications for molecular spintronics.
Contribution
It provides new insights into controlling spin states in cobalt valence tautomers using external stimuli, combining magnetometry, NMR, and muon spin relaxation techniques.
Findings
Photoinduced high-spin state persists for hours below 30 K.
External pressure shifts LS-HS crossover to room temperature at ~10 kbar.
Spin dynamics in the high-spin state occur in the MHz range.
Abstract
We present a study of the static magnetic properties and spin dynamics in Cobalt valence tautomers (VT), molecules where a low-spin (LS) to high-spin (HS) crossover driven by an intramolecular electron transfer can be controlled by the temperature, by the external pressure or by light irradiation. In the investigated complex, a LS-Co(III) ion bound to a dinegative organic ligand can be reversibly converted into the HS-Co(II) bound to a mononegative one. By combining magnetization measurements with Nuclear Magnetic Resonance (NMR) and Muon Spin Relaxation ({\mu}SR), we have investigated the static magnetic properties and the spin dynamics as a function of the temperature. Moreover, the effect of the external pressure as well as of the infrared light irradiation have been explored through magnetometry and NMR measurements to determine the spin dynamics of the HS state. The photoinduced HS…
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