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Magnetometric Characterization of Intermediates in the Solid-State Electrochemistry of Redox-Active Metal-Organic Frameworks
Published on: June 9, 2023
Flash Communication: Exploring the Coordination of π‑Acids and Redox-Active Diatomics to a High-Spin and Highly
Morgan Hern1, Christopher D Hastings1, Justin Q Hao1
1Department of Chemistry, University of Rochester, Rochester, New York 14627, United States.
Abstract:
A new trigonally symmetric ligand scaffold is reported from the reaction of tris-(2-aminoethyl)-amine (TREN) and methyl trifluoroacetate. Deprotonation and metalation with iron-(II) yields a trigonal monopyramidal ferrate that bears an open coordination site surrounded by C-F motifs. The weak-field ligand environment promoted by the fluorinated amidate donors leads to distinctive behaviors that are apparent in reactions with π-acids such as CO and tert-butylisocyanide. As shown by structural, spectroscopic, and computational studies, the trifluoromethyl substituents lead to an attenuation of π-backbonding capabilities, while also labilizing the Fe-Namidate bonds. While no tractable reactivity with O2 occurs, the ferrate irreversibly coordinates NO to yield a high-spin {FeNO}7 complex.
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