Electrochemical studies of tris(cyclopentadienyl)thorium and uranium complexes in the +2, +3, and +4 oxidation states. Article

Wedal, Justin C, Barlow, Jeffrey M, Ziller, Joseph W et al. (2021). Electrochemical studies of tris(cyclopentadienyl)thorium and uranium complexes in the +2, +3, and +4 oxidation states. . Chemical Science, 12(24), 8501-8511. 10.1039/d1sc01906f

cited authors

  • Wedal, Justin C; Barlow, Jeffrey M; Ziller, Joseph W; Yang, Jenny Y; Evans, William J

authors

abstract

  • Electrochemical measurements on tris(cyclopentadienyl)thorium and uranium compounds in the +2, +3, and +4 oxidation states are reported with C5H3(SiMe3)2, C5H4SiMe3, and C5Me4H ligands. The reduction potentials for both U and Th complexes trend with the electron donating abilities of the cyclopentadienyl ligand. Thorium complexes have more negative An(iii)/An(ii) reduction potentials than the uranium analogs. Electrochemical measurements of isolated Th(ii) complexes indicated that the Th(iii)/Th(ii) couple was surprisingly similar to the Th(iv)/Th(iii) couple in Cp''-ligated complexes. This suggested that Th(ii) complexes could be prepared from Th(iv) precursors and this was demonstrated synthetically by isolation of directly from UV-visible spectroelectrochemical measurements and reactions of with elemental barium indicated that the thorium system undergoes sequential one electron transformations.

publication date

  • May 1, 2021

published in

Digital Object Identifier (DOI)

Medium

  • Electronic

start page

  • 8501

end page

  • 8511

volume

  • 12

issue

  • 24