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磷取代基对三价铀和镧系膦二硼酸酯结构及溶液形态的影响

The Influence of Phosphorus Substituents on the Structures and Solution Speciation of Trivalent Uranium and Lanthanide Phosphinodiboranates.

作者信息

Zgrabik Joshua C, Bhowmick Rina, Eckstrom Francesca D, Harrison A Rayford, Fetrow Taylor V, Blake Anastasia V, Vlaisavljevich Bess, Daly Scott R

机构信息

Department of Chemistry, The University of Iowa, E331 Chemistry Building, Iowa City, Iowa 52242, United States.

Department of Chemistry, The University of South Dakota, 414 E Clark St., Vermillion, South Dakota 57069, United States.

出版信息

Inorg Chem. 2024 May 27;63(21):9451-9463. doi: 10.1021/acs.inorgchem.3c02773. Epub 2023 Nov 27.

Abstract

Here, we report the mechanochemical synthesis and characterization of homoleptic uranium and lanthanide phosphinodiboranates with isopropyl and ethyl substituents attached to phosphorus. M(HBPPrBH) complexes with M = U, Nd, Sm, Tb, and Er were prepared by ball milling UI(THF), SmBr, or MI with three equivalents of K(HBPPrBH). M(HBPEtBH) with M = U and Nd were prepared similarly using K(HBPEtBH), and the complexes were purified by extraction and crystallization from EtO or CHCl. Single-crystal XRD studies revealed that all five M(HBPPrBH) crystallize as dimers, despite the significant differences in metal radii across the series. In contrast, Nd(HBPEtBH) with smaller ethyl substituents crystallized as a coordination polymer. Crystals of U(HBPEtBH) were not suitable for structural analysis, but crystals of U(HBPMeBH) isolated in low yield by solution methods were isostructural with Nd(HBPEtBH). H and B NMR studies in CD revealed that all of the complexes form mixtures of monomer and oligomers when dissolved, and the extent of oligomerization was highly dependent on metal radius and phosphorus substituent size. A comprehensive analysis of all structurally characterized uranium and lanthanide phosphinodiboranate complexes reported to date, including those with larger Ph and Bu substituents, revealed that the degree of oligomerization in solution can be correlated to differences in B-P-B angles obtained from single-crystal XRD studies. Density functional theory calculations, which included structural optimizations in combination with conformational searches using tight binding methods, replicated the general experimental trends and revealed free energy differences that account for the different solution and solid-state structures. Collectively, these results reveal how steric changes to phosphorus substituents significantly removed from metal coordination sites can have a significant influence on solution speciation, deoligomerization energies, and the solid-state structure of homoleptic phosphinodiboranate complexes containing trivalent f-metals.

摘要

在此,我们报告了带有连接在磷上的异丙基和乙基取代基的均配型铀和镧系膦二硼酸盐的机械化学合成及表征。通过将UI(THF)、SmBr或MI与三当量的K(HBPPrBH)进行球磨制备了M = U、Nd、Sm、Tb和Er的M(HBPPrBH)配合物。使用K(HBPEtBH)以类似方式制备了M = U和Nd的M(HBPEtBH),并且通过从EtO或CHCl中萃取和结晶对配合物进行了纯化。单晶XRD研究表明,尽管该系列中金属半径存在显著差异,但所有五种M(HBPPrBH)均以二聚体形式结晶。相比之下,具有较小乙基取代基的Nd(HBPEtBH)结晶为配位聚合物。U(HBPEtBH)的晶体不适用于结构分析,但通过溶液法以低产率分离得到的U(HBPMeBH)晶体与Nd(HBPEtBH)同构。在CD中的H和B NMR研究表明,所有配合物在溶解时均形成单体和低聚物的混合物,并且低聚程度高度依赖于金属半径和磷取代基大小。对迄今为止报道的所有结构表征的铀和镧系膦二硼酸盐配合物(包括那些具有较大Ph和Bu取代基的配合物)进行的综合分析表明,溶液中的低聚程度可以与从单晶XRD研究中获得的B-P-B角度差异相关联。密度泛函理论计算包括结合使用紧密结合方法的构象搜索进行的结构优化,重现了一般实验趋势,并揭示了导致不同溶液和固态结构的自由能差异。总体而言,这些结果揭示了从金属配位位点显著去除的磷取代基的空间变化如何对含三价f金属的均配型膦二硼酸盐配合物的溶液形态、解聚能和固态结构产生重大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85a2/11134491/0392a780482e/ic3c02773_0012.jpg

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