TY - JOUR
T1 - Design, Synthesis, and Modulation of Valence Tautomeric Binuclear Cobalt Compounds with Redox-Active Bridged Ligands
AU - Zhang, Lei
AU - Liu, Zhi Kun
AU - Yue, Ling Tai
AU - Hu, Jie Sheng
AU - Zhao, Yu Meng
AU - Tao, Jun
N1 - Publisher Copyright:
© 2025 Wiley-VCH GmbH.
PY - 2025/7/16
Y1 - 2025/7/16
N2 - Valence tautomeric (VT) compounds are a kind of bistable materials characterized by intramolecular electron transfer (ET). This study focuses on the controlled synthesis and performance modulation of compounds exhibiting VT behavior. Through the design of redox-active ligands and the adoption of auxiliary ligands and counter-anions, three compounds are successfully prepared, that is, [{Co(tpa)}2(Lcat−cat)](PF6)2·8H2O·4CH3OH (1), [{Co(tpa)}2(Lcat−cat)](BPh4)2·2CH2Cl2 (2), and [{Co(dpaOMe)}2(Lcat−cat)](BPh4)2·6CH3CN (3), respectively, where Lcat−cat = 6,6′-((1 E,1′E)-hydrazine-1,2-diylidenebis(methaneylylidene)) bis(3,5-di-tert-butylbenzene-1,2-diol), tpa = tris(2-pyridinylmethyl) amine, and dpaOMe = 2-methoxy-N,N-bis(pyridine-2-ylmethyl)aniline. Structural, magnetic, and spectroscopic analyzes reveal that 1 and 2 remain in the {CoIII-cat-cat-CoIII} configuration, whereas 3 undergoes VT transition near 350 K. Comparative studies highlight that the modification of auxiliary ligand from tpa to dpaOMe significantly enhances the intramolecular ET capability. This finding provides valuable insights into how ligand engineering regulates VT behavior, offering a foundation for the design of advanced functional materials.
AB - Valence tautomeric (VT) compounds are a kind of bistable materials characterized by intramolecular electron transfer (ET). This study focuses on the controlled synthesis and performance modulation of compounds exhibiting VT behavior. Through the design of redox-active ligands and the adoption of auxiliary ligands and counter-anions, three compounds are successfully prepared, that is, [{Co(tpa)}2(Lcat−cat)](PF6)2·8H2O·4CH3OH (1), [{Co(tpa)}2(Lcat−cat)](BPh4)2·2CH2Cl2 (2), and [{Co(dpaOMe)}2(Lcat−cat)](BPh4)2·6CH3CN (3), respectively, where Lcat−cat = 6,6′-((1 E,1′E)-hydrazine-1,2-diylidenebis(methaneylylidene)) bis(3,5-di-tert-butylbenzene-1,2-diol), tpa = tris(2-pyridinylmethyl) amine, and dpaOMe = 2-methoxy-N,N-bis(pyridine-2-ylmethyl)aniline. Structural, magnetic, and spectroscopic analyzes reveal that 1 and 2 remain in the {CoIII-cat-cat-CoIII} configuration, whereas 3 undergoes VT transition near 350 K. Comparative studies highlight that the modification of auxiliary ligand from tpa to dpaOMe significantly enhances the intramolecular ET capability. This finding provides valuable insights into how ligand engineering regulates VT behavior, offering a foundation for the design of advanced functional materials.
KW - cobalt
KW - crystal structures
KW - electrochemistry
KW - synthesis
KW - valence tautomerism
UR - http://www.scopus.com/pages/publications/105009522522
U2 - 10.1002/ejic.202500103
DO - 10.1002/ejic.202500103
M3 - Article
AN - SCOPUS:105009522522
SN - 1434-1948
VL - 28
JO - European Journal of Inorganic Chemistry
JF - European Journal of Inorganic Chemistry
IS - 20
M1 - e202500103
ER -