Sub lattice driven spin state ordering and coordination elasticity in Fe(ii) 1,3,4-thiadiazole complexes

Item type:Item, ZeitschriftenaufsatzAccess status: Open Access ,

Abstract

Understanding the role of co-ligand identity, governing spin-state energetics in many Fe(ii) complexes, is essential for designing responsive spin-crossover materials. We report the synthesis of an unsymmetrical bis(pyridin-2-ylmethyl)glycyl benzohydrazide-derived ligand, 1-(5-phenyl-1,3,4-thiadiazol-2-yl)-N,N-bis(pyridin-2-ylmethyl)methanamine (LPh-TDA), and its corresponding complexes [Fe(LPh-TDA)(NCE)2]·H2O (E = S (C1), Se (C2), BH3 (C3)). While the ligand-field strength gradient ranges from weak (NCS−) to strong (NCBH3−), the SCO behaviour of the resulting complexes does not reflect this. Variable-temperature single-crystal X-ray diffraction, SQUID magnetometry and 57Fe Mössbauer spectroscopy show that there is packing-induced sublattice spin-state ordering for C1, which has two distinct Fe(ii) sites. Of these sites, only one transitions to the low-spin state in two complexes, while the second remains locked in the high-spin (HS) state. C2 remains high-spin throughout the entire temperature range, whereas C3 exhibits a complete, one-step SCO with T1/2 = 153 K. Density functional theory (DFT) calculations help to quantify the energetic origin of the ordered LS–HS configuration in C1 and demonstrate that intermolecular packing effects override intrinsic ligand-field trends. These results highlight the dominant role of solid-state organization in dictating SCO behavior, even in systems engineered to isolate co-ligand electronic effects.

Description

Keywords

Citation

Published in

Dalton transactions : a journal of inorganic chemistry, including bioinorganic, organometallic, and solid-state chemistry, 55, 7, RSC, Cambridge, 2026, https://doi.org/10.1039/d5dt02912k

Relationships

Cites

Compiles

Continues

Describes

Documents

Has the metadata

Has the part

Has the translation

Has the version

Is cited by

Is compiled by

Is continued by

Is derived from

Is described by

Is documented by

Is identical to

Is metadata for

Is a new version of

Is an original form of

Is a part of

Is a previous version of

Is published in

Is referenced by

Is required by

Is reviewed by

Is a source of

Is supplemented by

Is a supplement to

Is a translation of

Is a variant form of

References

Requires

Reviews

Collections

Endorsement

Review

Supplemented By

Referenced By