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October 9, 2025Inorganic Chemistry5 citationsOpen Access

A Neutral Dy(II) Bis(amide): Synthesis, Magnetism, and a P42– Complex

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RJRashmi JenaFBFlorian BennerRSRichard J. Staples

Key Points

  • The newly synthesized dysprosium(II) complex exhibits unique magnetic properties, opening new pathways for research.
  • The redox potential of the Dy2+/3+ couple was measured at -1.094 V, establishing a baseline for its electrochemical behavior.
  • CASSCF calculations reveal the ion's configuration, indicating the ligands interact primarily through 4f95d1-configuration.
  • Reacting Dy(NHAr*)2 with P4 produced a unique salt, incorporating both η2-P42- and η4-P42- ligands in its structure.

Abstract

Reaction of DyCl3 with KNHAr*, where Ar* = 2, 6-Ar2C6H3 and Ar = 2, 4, 6-iPr3C6H2, results in the formation of ClDy (NHAr*) 2, which can be reduced with KC8 in THF to room temperature stable dysprosium (II) Dy (NHAr*) 2, where Ar rings of the NHAr* ligand chelate and bind to the metal center to give a black sandwich complex. The redox potential for the reversible Dy2+/3+-couple was found to be -1. 094 ± 0. 001 V with respect to FeCp2+/0 as 0. 000 V. The complex was examined by CASSCF calculations, which suggest the non-Kramer's ion has an 4f95d1-configuration with little to no s-orbital participation. The reaction of Dy (NHAr*) 2 with CNtBu results in assumed tert-butyl radical loss along with formation of the isocyanide CN-Dy (NHAr*) 2, which shows a strong absorption in the IR spectrum at 2052 cm-1 assigned to the C-N stretch. Reaction of P4 with Dy (NHAr*) 2 gave crystals of salt Dy (NHAr*) 2+ (P4) Dy (NHAr*) 2-, which shows both η2-P42- and η4-P42- ligands in the solid state.

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Cite This Study

Jena et al. (2025) studied this question.

synapsesocial.com/papers/68e7ba40ccde5f1021f64a06https://doi.org/10.1021/acs.inorgchem.5c02908
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