Theoretical modeling of two-step spin-crossover transitions in FeII dinuclear systems

Autor/a

Cirera Fernández, Jordi

Ruiz Sabín, Eliseo

Data de publicació

2020-03-31T15:29:04Z

2020-03-31T15:29:04Z

2015-07-22

2020-03-31T15:29:04Z

Resum

A computational methodology to model the spin-transition in the dinuclear iron(II) systems [Fe(bt)(NCX)2]2(μ-bpym) and [Fe(pypzH)(NCX)]2(μ-pypz)2 (X = S, Se or BH3) is presented. Using the hybrid meta-GGA exchange-correlation functional TPSSh, accurate values for the thermochemical quantities associated with the different spin-states can be computed, and subsequently used to calculate the corresponding transition temperatures. This results also allow for the correct modeling of the spin-crossover curve, in agreement with the two-step or single-step nature experimentally reported for the transition. Our results indicate that the presence or absence of a two-step transition is mostly dominated by electronic effects and cooperativity between binding pockets plays a minor role. Insight in the electronic structure effects that enhance or suppress this behavior and its origins can be outlined from direct analysis of the relevant d-based molecular orbitals, which allows for a quantitative computational prediction to screen for new dinuclear systems with selected properties.

Tipus de document

Article
Versió acceptada

Llengua

Anglès

Matèries i paraules clau

Teoria del funcional de densitat; Spin (Física nuclear); Density functionals; Nuclear spin

Publicat per

Royal Society of Chemistry

Documents relacionats

Versió postprint del document publicat a: https://doi.org/10.1039/c5tc01304f

Journal of Materials Chemistry C, 2015, vol. 3, num. 30, p. 7954-7961

https://doi.org/10.1039/c5tc01304f

Drets

(c) Cirera Fernández, Jordi et al., 2015

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