Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Inorg Chem. 2010 Feb 15;49(4):1995-2007. doi: 10.1021/ic9024475.
A comparative examination of the electronic interactions across a series of trimetallic actinide and mixed lanthanide-actinide and lanthanum-actinide complexes is presented. Using reduced, radical terpyridyl ligands as conduits in a bridging framework to promote intramolecular metal-metal communication, studies containing structural, electrochemical, and X-ray absorption spectroscopy are reported for (C(5)Me(5))(2)An-N horizontal lineC(Bn)(tpy-M{C(5)Me(4)R}(2)) (where An = Th(IV), U(IV); Bn = CH(2)C(6)H(5); M = La(III), Sm(III), Yb(III), U(III); R = H, Me, Et) to reveal effects dependent on the identities of the metal ions and R-groups. The electrochemical results show differences in redox energetics at the peripheral "M" site between complexes and significant wave splitting of the metal- and ligand-based processes indicating substantial electronic interactions between multiple redox sites across the actinide-containing bridge. Most striking is the appearance of strong electronic coupling for the trimetallic Yb(III)-U(IV)-Yb(III), Sm(III)-U(IV)-Sm(III), and La(III)-U(IV)-La(III) complexes, 8, 9b, and 10b, respectively, whose calculated comproportionation constant K(c) is slightly larger than that reported for the benchmark Creutz-Taube ion. X-ray absorption studies for monometallic metallocene complexes of U(III), U(IV), and U(V) reveal small but detectable energy differences in the "white-line" feature of the uranium L(III)-edges consistent with these variations in nominal oxidation state. The sum of these data provides evidence of 5f/6d-orbital participation in bonding and electronic delocalization in these multimetallic f-element complexes. An improved, high-yielding synthesis of 4'-cyano-2,2':6',2''-terpyridine is also reported.
呈现了一系列三价锕系元素和混合镧系元素-锕系元素和镧-锕系元素配合物的电子相互作用的比较研究。使用还原的、自由基三吡啶基配体作为桥接框架中的导体,以促进分子内金属-金属通讯,报道了包含结构、电化学和 X 射线吸收光谱学的研究,用于(C(5)Me(5))(2)An-N 水平线 C(Bn)(tpy-M{C(5)Me(4)R}(2))(其中 An = Th(IV), U(IV);Bn = CH(2)C(6)H(5);M = La(III), Sm(III), Yb(III), U(III);R = H, Me, Et),以揭示依赖于金属离子和 R-基团的身份的影响。电化学结果表明,在配合物的外围“M”位点处的氧化还原能学存在差异,并且金属和配体基过程的波分裂显著,表明跨越含锕系元素桥的多个氧化还原位点之间存在大量电子相互作用。最引人注目的是三价 Yb(III)-U(IV)-Yb(III)、Sm(III)-U(IV)-Sm(III)和 La(III)-U(IV)-La(III)配合物8、9b和10b的强烈电子耦合的出现,分别,其计算的comporportionation 常数 K(c)略大于基准 Creutz-Taube 离子的报告值。单核金属茂配合物的 U(III)、U(IV)和 U(V)的 X 射线吸收研究表明,铀 L(III)-边的“白线”特征中的能量差异很小但可检测,与这些标称氧化态的变化一致。这些数据的总和提供了证据,表明 5f/6d-轨道参与了这些多金属 f 元素配合物的成键和电子离域。还报道了 4'-氰基-2,2':6',2''-三吡啶的改进的、高产率的合成方法。