首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Bonding trends traversing the tetravalent actinide series: Synthesis, structural, and computational analysis of An ~(IV)(~(Ar)acnac) _4 complexes (An = Th, U, Np, Pu; ~(Ar)acnac = Ar N C(Ph)CHC(Ph) O; Ar = 3,5- ~tBu _2C _6H _3)
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Bonding trends traversing the tetravalent actinide series: Synthesis, structural, and computational analysis of An ~(IV)(~(Ar)acnac) _4 complexes (An = Th, U, Np, Pu; ~(Ar)acnac = Ar N C(Ph)CHC(Ph) O; Ar = 3,5- ~tBu _2C _6H _3)

机译:四价act系元素的键合趋势:An〜(IV)(〜(Ar)acnac)_4配合物(An = Th,U,Np,Pu;〜(Ar)acnac = Ar NC( Ph)CHC(Ph)O; Ar = 3,5-〜tBu _2C _6H _3)

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A series of tetravalent An(IV) complexes with a bis-phenyl β-ketoiminate N,O donor ligand has been synthesized with the aim of identifying bonding trends and changes across the actinide series. The neutral molecules are homoleptic with the formula An(~(Ar)acnac) _4 (An = Th (1), U (2), Np (3), Pu (4); ~(Ar)acnac = ArNC(Ph)CHC(Ph)O; Ar = 3,5- ~tBu _2C _6H _3) and were synthesized through salt metathesis reactions with actinide chloride precursors. NMR and electronic absorption spectroscopy confirm the purity of all four new compounds and demonstrate stability in both solution and the solid state. The Th, U, and Pu complexes were structurally elucidated by single-crystal X-ray diffraction and shown to be isostructural in space group C2/c. Analysis of the bond lengths reveals shortening of the An-O and An-N distances arising from the actinide contraction upon moving from 1 to 2. The shortening is more pronounced upon moving from 2 to 4, and the steric constraints of the tetrakis complexes appear to prevent the enhanced U-O versus Pu-O orbital interactions previously observed in the comparison of UI _2(~(Ar)acnac) _2 and PuI _2(~(Ar)acnac) _2 bis-complexes. Computational analysis of models for 1, 2, and 4 (1a, 2a, and 4a, respectively) concludes that both the An-O and the An-N bonds are predominantly ionic for all three molecules, with the An-O bonds being slightly more covalent. Molecular orbital energy level diagrams indicate the largest 5f-ligand orbital mixing for 4a (Pu), but spatial overlap considerations do not lead to the conclusion that this implies significantly greater covalency in the Pu-ligand bonding. QTAIM bond critical point data suggest that both U-O/U-N and Pu-O/Pu-N are marginally more covalent than the Th analogues.
机译:合成了一系列具有双苯基β-酮化N,O供体配体的四价An(IV)配合物,目的是确定整个trends系元素的键合趋势和变化。中性分子的化学式为An(〜(Ar)acnac)_4(An = Th(1),U(2),Np(3),Pu(4);〜(Ar)acnac = ArNC(Ph) CHC(Ph)O; Ar = 3,5-〜tBu _2C _6H _3),是通过与act系元素氯化物前体的盐复分解反应合成的。 NMR和电子吸收光谱证实了所有四种新化合物的纯度,并在溶液和固态下均表现出稳定性。 Th,U和Pu配合物通过单晶X射线衍射进行了结构解析,在C2 / c空间群中显示为同构。对键长的分析表明,1系元素从1移至2时,the系元素收缩引起的An-O和An-N距离缩短。从2移至4时,ing缩短更明显,并且出现了四元配合物的空间约束以防止先前在UI _2(〜(Ar)acnac)_2和PuI _2(〜(Ar)acnac)_2双复合物的比较中观察到增强的UO与Pu-O轨道相互作用。对1、2和4(分别为1a,2a和4a)模型的计算分析得出结论,对于所有三个分子,An-O和An-N键都主要是离子性的,而An-O键则略微更共价。分子轨道能级图显示了4a(Pu)的最大5f-配体轨道混合,但是考虑到空间重叠,并不能得出结论,这暗示着Pu-配体键合的共价明显更高。 QTAIM键临界点数据表明,U-O / U-N和Pu-O / Pu-N的共价比Th类似物略高。

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