Iron(ii) bis-pyrazolilpyridyl (bpp-R) complexes [Fe(bpp-R)(2)](X)(2)center dot solvent, R = substituent and X- = anion, can undergo a spin transition from high (S = 2, HS) to low spin (S = 0, LS), being spin crossover (SCO) in the solid state. The distortion of the octahedral coordination environment around the metal centre is governed by crystal packing, i.e. the intermolecular interactions among the substituent R of the bpp-R ligands, the anion X-, and the co-crystallized solvent, and this modulates the SCO behaviour. In this work, an innovative multivariate approach, through the combination of the chemometric tools Principal Component Analysis and Partial Least Squares regression, was applied on the coordination bond distances and angles and selected torsional angles of the available HS structures. The obtained results can efficiently model and rationalize the structural data distinguishing between SCO-active and HS-blocked complexes bearing different R groups, X- anions, and co-crystallized solvents and help predict the spin transition temperature T-1/2.

A proficient multivariate approach for iron(II) spin crossover behaviour modelling in the solid state / Marchi, Lorenzo; Fantuzzi, Simone; Cingolani, Andrea; Messori, Alessandro; Mazzoni, Rita; Zacchini, Stefano; Cocchi, Marina; Rigamonti, Luca. - In: DALTON TRANSACTIONS. - ISSN 1477-9226. - 52:22(2023), pp. 7684-7694. [10.1039/d3dt00847a]

A proficient multivariate approach for iron(II) spin crossover behaviour modelling in the solid state

Marchi, Lorenzo;Cocchi, Marina;Rigamonti, Luca
2023

Abstract

Iron(ii) bis-pyrazolilpyridyl (bpp-R) complexes [Fe(bpp-R)(2)](X)(2)center dot solvent, R = substituent and X- = anion, can undergo a spin transition from high (S = 2, HS) to low spin (S = 0, LS), being spin crossover (SCO) in the solid state. The distortion of the octahedral coordination environment around the metal centre is governed by crystal packing, i.e. the intermolecular interactions among the substituent R of the bpp-R ligands, the anion X-, and the co-crystallized solvent, and this modulates the SCO behaviour. In this work, an innovative multivariate approach, through the combination of the chemometric tools Principal Component Analysis and Partial Least Squares regression, was applied on the coordination bond distances and angles and selected torsional angles of the available HS structures. The obtained results can efficiently model and rationalize the structural data distinguishing between SCO-active and HS-blocked complexes bearing different R groups, X- anions, and co-crystallized solvents and help predict the spin transition temperature T-1/2.
2023
52
22
7684
7694
A proficient multivariate approach for iron(II) spin crossover behaviour modelling in the solid state / Marchi, Lorenzo; Fantuzzi, Simone; Cingolani, Andrea; Messori, Alessandro; Mazzoni, Rita; Zacchini, Stefano; Cocchi, Marina; Rigamonti, Luca. - In: DALTON TRANSACTIONS. - ISSN 1477-9226. - 52:22(2023), pp. 7684-7694. [10.1039/d3dt00847a]
Marchi, Lorenzo; Fantuzzi, Simone; Cingolani, Andrea; Messori, Alessandro; Mazzoni, Rita; Zacchini, Stefano; Cocchi, Marina; Rigamonti, Luca
File in questo prodotto:
File Dimensione Formato  
D3DT00847A.pdf

Open Access dal 02/06/2024

Tipologia: Versione dell'autore revisionata e accettata per la pubblicazione
Dimensione 630.83 kB
Formato Adobe PDF
630.83 kB Adobe PDF Visualizza/Apri
Pubblicazioni consigliate

Licenza Creative Commons
I metadati presenti in IRIS UNIMORE sono rilasciati con licenza Creative Commons CC0 1.0 Universal, mentre i file delle pubblicazioni sono rilasciati con licenza Attribuzione 4.0 Internazionale (CC BY 4.0), salvo diversa indicazione.
In caso di violazione di copyright, contattare Supporto Iris

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1307186
Citazioni
  • ???jsp.display-item.citation.pmc??? 1
  • Scopus 6
  • ???jsp.display-item.citation.isi??? 6
social impact