Surbella Robert G, Ducati Lucas C, Schofield Mark H, McNamara Bruce K, Pellegrini Kristi L, Corbey Jordan F, Schwantes Jon M, Autschbach Jochen, Cahill Christopher L
Pacific Northwest National Laboratory, 902 Battelle Boulevard, Richland, Washington 99354, United States.
Department of Fundamental Chemistry Institute of Chemistry, University of São Paulo, Av. Prof. Lineu Prestes 748, São Paulo 05508-000, Brazil.
Inorg Chem. 2022 Nov 14;61(45):17963-17971. doi: 10.1021/acs.inorgchem.2c02084. Epub 2022 Oct 28.
We report the synthesis of five new hybrid materials containing the [PuCl] anion and charge-balancing, noncovalent interaction donating 4-X-pyridinium (X = H, Cl, Br, I) cations. Single crystals of the title compounds were grown and harvested from acidic, chloride-rich, aqueous media, and their structures were determined via X-ray diffraction. Compounds -, (4XPyH)[PuCl], and , (4IPyH)[PuCl]·2Cl, exhibit two distinct sheet-like structure types. Structurally relevant noncovalent interactions were tabulated from crystallographic data and verified computationally using electrostatic surface potential maps and the quantum theory of atoms in molecules (QTAIM). The strength of the hydrogen and halogen bonds was quantified using Kohn-Sham density functional theory, and a hierarchy of acceptor-donor pairings was established. The Pu-Cl bonds were studied using QTAIM and natural localized molecular orbital (NLMO) analyses to delineate the underlying bond mechanism and hybrid atomic orbital contributions therein. The results of the Pu-Cl bond analyses were compared across compositions via analogous treatments of previously reported [PuOCl] and [PuCl(HO)] molecular units. The Pu-Cl bonds are predominately ionic yet exhibit small varying degrees of covalent character that increases from [PuCl(HO)] and [PuOCl] to [PuCl], while the participation of the Pu-based s/d and f orbitals concurrently decreases and increases, respectively.
我们报道了五种新型杂化材料的合成,这些材料包含[PuCl]阴离子以及电荷平衡的、通过非共价相互作用供体的4-X-吡啶鎓(X = H、Cl、Br、I)阳离子。从富含氯离子的酸性水性介质中生长并收获了标题化合物的单晶,并通过X射线衍射确定了它们的结构。化合物 - ,(4XPyH)[PuCl],以及 ,(4IPyH)[PuCl]·2Cl,呈现出两种不同的片状结构类型。从晶体学数据中列出了与结构相关的非共价相互作用,并使用静电表面势图和分子中的原子量子理论(QTAIM)进行了计算验证。使用Kohn-Sham密度泛函理论对氢键和卤键的强度进行了量化,并建立了受体-供体配对的层次结构。使用QTAIM和自然定域分子轨道(NLMO)分析研究了Pu-Cl键,以描绘其潜在的键合机制和其中的杂化原子轨道贡献。通过对先前报道的[PuOCl]和[PuCl(HO)]分子单元进行类似处理,比较了不同组成的Pu-Cl键分析结果。Pu-Cl键主要是离子键,但表现出小程度的不同共价特征,从[PuCl(HO)]和[PuOCl]到[PuCl]共价特征增加,而基于Pu的s/d和f轨道的参与分别同时减少和增加。