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Updated: Feb 5, 2026

Thermochemical Studies of NiII and ZnII Ternary Complexes Using Ion Mobility-Mass Spectrometry
Published on: June 8, 2022
Photoelectron spectroscopy and structural characterization of [EDTA · M(II)]2- · nH2O (M = Ni, Cu, Zn; n = 0-2)
Zicheng Ling1, Qinqin Yuan1,2, Xiangtao Kong3
1Department of Chemistry, Anhui University, Hefei 230601, China.
Abstract:
We investigated microhydrated transition metal-ethylenediaminetetraacetic acid (EDTA) dianion complexes [EDTA · M(II)]2- · nH2O (M = Ni, Cu, and Zn; n = 1, 2) using cryogenic photoelectron spectroscopy in conjunction with theoretical calculations. The measured spectra of [EDTA · Ni/Zn(II)]2- · nH2O closely resemble those of their corresponding bare dianions, with a systematic shift toward the high electron binding energy side upon stepwise hydration and featuring a hexadentate metal-EDTA binding motif. In contrast, the spectra of hydrated [EDTA · Cu(II)]2- exhibit broadened first detachment bands, implying the coexistence of multiple metal-ligand binding forms, as a consequence of the Jahn-Teller effect associated with its d9 electron arrangement. These findings showcase molecular-level insights into the structural adaptability of EDTA-based supramolecular assemblies comprising transition metal ions, water molecules, and multidentate ligand environments.
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