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N-杂环卡宾与锕系元素基于d轨道的π键合与观察到的金属-卡宾键长相对于镧系同系物的缩短相关。

N-Heterocyclic Carbene to Actinide d-Based π-bonding Correlates with Observed Metal-Carbene Bond Length Shortening Versus Lanthanide Congeners.

作者信息

Goodwin Conrad A P, Adams Ralph W, Gaunt Andrew J, Hanson Susan K, Janicke Michael T, Kaltsoyannis Nikolas, Liddle Stephen T, May Iain, Miller Jeffrey L, Scott Brian L, Seed John A, Whitehead George F S

机构信息

Chemistry Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, United States.

Centre for Radiochemistry Research, The University of Manchester, Oxford Road, Manchester M13 9PL, U.K.

出版信息

J Am Chem Soc. 2024 Apr 17;146(15):10367-10380. doi: 10.1021/jacs.3c12721. Epub 2024 Apr 3.

Abstract

Comparison of bonding and electronic structural features between trivalent lanthanide (Ln) and actinide (An) complexes across homologous series' of molecules can provide insights into subtle and overt periodic trends. Of keen interest and debate is the extent to which the valence f- and d-orbitals of trivalent Ln/An ions engage in covalent interactions with different ligand donor functionalities and, crucially, how bonding differences change as both the Ln and An series are traversed. Synthesis and characterization (SC-XRD, NMR, UV-vis-NIR, and computational modeling) of the homologous lanthanide and actinide N-heterocyclic carbene (NHC) complexes [M(CMe)(X)(I)] {X = I, M = La, Ce, Pr, Nd, U, Np, Pu; X = Cl, M = Nd; X = I/Cl, M = Nd, Am; and I = [C(NMeCMe)]} reveals consistently shorter An-C vs Ln-C distances that do not substantially converge upon reaching Am/Nd comparison. Specifically, the difference of 0.064(6) Å observed in the La/U pair is comparable to the 0.062(4) Å difference observed in the Nd/Am pair. Computational analyses suggest that the cause of this unusual observation is rooted in the presence of π-bonding with the valence d-orbital manifold in actinide complexes that is not present in the lanthanide congeners. This is in contrast to other documented cases of shorter An-ligand vs Ln-ligand distances, which are often attributed to increased 5f vs 4f radial diffusivity leading to differences in 4f and 5f orbital bonding involvement. Moreover, in these traditional observations, as the 5f series is traversed, the 5f manifold contracts such that by americium structural studies often find no statistically significant Amvs Nd metal-ligand bond length differences.

摘要

比较三价镧系元素(Ln)和锕系元素(An)配合物在同系分子中的键合和电子结构特征,有助于深入了解微妙和明显的周期性趋势。一个备受关注且存在争议的问题是,三价Ln/An离子的价f轨道和d轨道与不同配体供体官能团发生共价相互作用的程度,以及至关重要的是,随着Ln和An系列的变化,键合差异如何改变。对同系镧系和锕系N-杂环卡宾(NHC)配合物[M(CMe)(X)(I)] {X = I,M = La、Ce、Pr、Nd、U、Np、Pu;X = Cl,M = Nd;X = I/Cl,M = Nd、Am;I = [C(NMeCMe)]}进行合成和表征(单晶X射线衍射、核磁共振、紫外-可见-近红外光谱和计算建模),结果显示An-C键长始终比Ln-C键长短,在比较Am/Nd时并未显著收敛。具体而言,La/U对中观察到的0.064(6) Å差异与Nd/Am对中观察到的0.062(4) Å差异相当。计算分析表明,这一异常现象的原因在于锕系配合物中存在与价d轨道多重态的π键合,而镧系同系物中不存在这种键合。这与其他记录的An-配体键长比Ln-配体键长短的情况形成对比,后者通常归因于5f比4f径向扩散率增加,导致4f和5f轨道键合参与度不同。此外,在这些传统观察中,随着5f系列的变化,5f多重态收缩,以至于通过对镅的结构研究常常发现,镅与钕的金属-配体键长差异在统计学上不显著。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2147/11029940/d375202d43b9/ja3c12721_0001.jpg

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