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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Comparative Study of f-Element Electronic Structure across a Series of Multimetallic Actinide and Lanthanoid-Actinide Complexes Possessing Redox-Active Bridging Ligands
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Comparative Study of f-Element Electronic Structure across a Series of Multimetallic Actinide and Lanthanoid-Actinide Complexes Possessing Redox-Active Bridging Ligands

机译:一系列具有氧化还原活性桥联配体的多金属Act系元素和镧系-Act系元素配合物的f元素电子结构的比较研究

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摘要

A comparative examination of the electronic interactions across a series of trimetallic actinide and mixed lanthanideactinide 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 (C5Me5)2An[-NdC(Bn)(tpy-M{C5Me4R}2)]2 (where An = ThIV, UIV; Bn = CH2C6H5; M = LaIII, SmIII, YbIII, UIII; 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 YbIII-UIV-YbIII, SmIII-UIV-SmIII, and LaIII-UIV-LaIII complexes,[8]-, [9b]-, and [10b]-, respectively, whose calculated comproportionation constant Kc is slightly larger than that reported for the benchmark Creutz-Taube ion. X-ray absorption studies for monometallic metallocene complexes of UIII, UIV, and UV reveal small but detectable energy differences in the “white-line” feature of the uranium LIII-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, highyielding synthesis of 40-cyano-2,20:60,200-terpyridine is also reported.
机译:提出了一系列三金属act系元素以及混合的镧系元素act系元素和镧系元素act系元素之间的电子相互作用的比较研究。在桥接框架中使用还原的自由基三联吡啶基配体作为导管,以促进分子内金属与金属之间的通讯,报道了有关(C5Me5)2An [-NdC(Bn)(tpy-M { C5Me4R} 2)] 2(其中An = ThIV,UIV; Bn = CH2C6H5; M = LaIII,SmIII,YbIII,UIII; R = H,Me,Et)以揭示取决于金属离子和R-组。电化学结果表明,配合物之间的外围“ M”位处的氧化还原能量不同,并且基于金属和配体的过程发生了明显的波分裂,表明整个含across系元素的氧化还原位点之间存在大量的电子相互作用。最引人注目的是三金属YbIII-UIV-YbIII,SmIII-UIV-SmIII和LaIII-UIV-LaIII配合物[8]-,[9b]-和[10b]-的强电子耦合的出现,其计算的比例常数Kc略大于基准Creutz-Taube离子的报告值。 UIII,UIV和UV的单金属茂金属配合物的X射线吸收研究表明,铀LIII边缘的“白线”特征中存在微小但可检测到的能量差异,与标称氧化态的这些变化一致。这些数据的总和提供了这些多金属f元素络合物中5f / 6d轨道参与键合和电子离域的证据。还报道了一种改进的,高产率的40-氰基-2,20:60,200-吡啶的合成。

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