Construction of SCO-fluorescence bifunctional cobalt(ii) complexes with anthracene-decorated terpy ligands

Abstract

The development of bifunctional materials integrating spin-crossover (SCO) and fluorescence properties has attracted increasing attention. However, no reports have thus far described Co(II)-based SCO systems exhibiting such dual functionality. In this study, we designed a terpyridine ligand incorporating an anthracene-decorated fluorophore, 4′-(anthracen-9-yl)-4,4″-dimethyl-2,2′:6′,2″-terpyridine (L), and synthesized three mononuclear Co(II) complexes: [Co(L)2](BF4)2·Et2O·0.8CH3OH·H2O (1), [Co(L)2]Br2·3DMF (2) and [Co(L)2](ClO4)2·0.5H2O (3). Magnetic susceptibility measurements revealed that all three complexes exhibit incomplete SCO behavior. Variable-temperature fluorescence spectroscopy demonstrated the coexistence of SCO and fluorescence in these systems. The intramolecular luminescence emission characteristics were further elucidated through variable-temperature UV-vis absorption spectroscopy and time-dependent density functional theory calculations. This work expands the system of bifunctional SCO-fluorescent materials and provides valuable insights into the design of multifunctional molecular systems.

Graphical abstract: Construction of SCO-fluorescence bifunctional cobalt(ii) complexes with anthracene-decorated terpy ligands

Supplementary files

Article information

Article type
Paper
Submitted
22 Aug 2025
Accepted
17 Nov 2025
First published
23 Nov 2025

New J. Chem., 2026, Advance Article

Construction of SCO-fluorescence bifunctional cobalt(II) complexes with anthracene-decorated terpy ligands

Y. Zhao, D. Chen, C. Yi, R. Zhou, M. Fu, J. Li, L. Zhang, R. Cai, Y. Meng and T. Liu, New J. Chem., 2026, Advance Article , DOI: 10.1039/D5NJ03386A

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