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◆ Crystal Growth & Design2025-10-13· Isostructural

<i>T</i> <sub>1/2</sub> Tuning in a Synergistic BODIPY-Tetrazole Fe(II) Spin Crossover-Photoluminescence System via Counterion Variation

Martin Huber, Matthias Schöbinger, Berthold Stöger, M. Reissner, P. Weinberger

原始摘要(英文原文)· Original abstract
High Resolution Image Download MS PowerPoint Slide Multifunctional bistable magnetic materials, particularly spin crossover (SCO)-photoluminescence (PL) systems, are of significant interest for molecular sensor applications. However, achieving predictable SCO tuning while simultaneously combining these properties remains a challenge. In this context, we synthesized a series of heteroleptic Fe(II) coordination compounds incorporating a fluorescence-active BODIPY-based 1 H -tetrazole ligand (4,4-difluoro-1,3,5,7-tetramethyl-8-[(1 H -tetrazol-1-yl)methyl]-4-bora-3a,4a-diaza- s -indacene), with the compounds differing by counteranion size (BF 4 – < ClO 4 – ≪ PF 6 – < CF 3 SO 3 – < SbF 6 – ). Remarkably, CF 3 SO 3 – coordinates to Fe(II), while all other anions form noncoordinating isostructural complexes. The coordination of CF 3 SO 3 – can be reversed through a topochemical exchange with H 2 O. Magnetic studies reveal that for the isostructural coordination compounds with noncoordinating anions, increasing anion size leads to incomplete and/or less abrupt spin transitions. The complex incorporating noncoordinating BF 4 – exhibits the most abrupt and complete SCO, demonstrating a weak yet synergistic interplay between SCO and PL signal modulation upon the spin transition, an effect attributed to electronic coupling. While not featuring SCO, the compound with a coordinating CF 3 SO 3 – anion is crystallographically interesting as it features a phase transition, forming a subtle 4-fold superstructure below 180 K. Our study provides a versatile platform for independent tuning of SCO and PL properties, paving the way for application in multifunctional devices.
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<i>T</i> <sub>1/2</sub> Tuning in a Synergistic BODIPY-Tetrazole Fe(II) Spin Crossover-Photoluminescence System via Counterion Variation — 科研速览 Science Skim