Evaluating electrochemical accessibility of 4f5d and 4f Ln() ions in (CHSiMe)Ln and (CMeH)Ln complexes

The reduction potentials (reported vs. Fc + /Fc) for a series of Cp′ 3 Ln complexes (Cp′ = C 5 H 4 SiMe 3 , Ln = lanthanide) were determined via electrochemistry in THF with [ n Bu 4 N][BPh 4 ] as the supporting electrolyte. The Ln( iii )/Ln( ii ) reduction potentials for Ln = Eu, Yb, Sm, and Tm (−1...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2021-10, Vol.5 (4), p.14384-14389
Hauptverfasser: Trinh, Michael T, Wedal, Justin C, Evans, William J
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Zusammenfassung:The reduction potentials (reported vs. Fc + /Fc) for a series of Cp′ 3 Ln complexes (Cp′ = C 5 H 4 SiMe 3 , Ln = lanthanide) were determined via electrochemistry in THF with [ n Bu 4 N][BPh 4 ] as the supporting electrolyte. The Ln( iii )/Ln( ii ) reduction potentials for Ln = Eu, Yb, Sm, and Tm (−1.07 to −2.83 V) follow the expected trend for stability of 4f 7 , 4f 14 , 4f 6 , and 4f 13 Ln( ii ) ions, respectively. The reduction potentials for Ln = Pr, Nd, Gd, Tb, Dy, Ho, Er, and Lu, that form 4f n 5d 1 Ln( ii ) ions ( n = 2-14), fall in a narrow range of −2.95 V to −3.14 V. Only cathodic events were observed for La and Ce at −3.36 V and −3.43 V, respectively. The reduction potentials of the Ln( ii ) compounds [K(2.2.2-cryptand)][Cp′ 3 Ln] (Ln = Pr, Sm, Eu) match those of the Cp′ 3 Ln complexes. The reduction potentials of nine (C 5 Me 4 H) 3 Ln complexes were also studied and found to be 0.05-0.24 V more negative than those of the Cp′ 3 Ln compounds. Electrochemical characterization of the Ln( iii )/Ln( ii ) reduction potentials for the entire lanthanide series and yttrium is reported for the (C 5 H 4 SiMe 3 ) 3 Ln complexes.
ISSN:1477-9226
1477-9234
DOI:10.1039/d1dt02427b