Wacker Jennifer N, Han Sae Young, Murray Aphra V, Vanagas Nicole A, Bertke Jeffery A, Sperling Joseph M, Surbella Robert G, Knope Karah E
Department of Chemistry , Georgetown University , 37th and O Streets NW , Washington, D.C. 20057 , United States.
Department of Chemistry and Biochemistry , Florida State University , Tallahassee , Florida 32306 , United States.
Inorg Chem. 2019 Aug 19;58(16):10578-10591. doi: 10.1021/acs.inorgchem.9b01279. Epub 2019 Jul 12.
A series of eighteen tetravalent actinide (An = Th, U, Pu) compounds were synthesized from acidic aqueous solutions containing thorium, uranium, or plutonium and a series of protonated nitrogen heterocycles. The compounds were characterized using Raman, IR, and optical absorption spectroscopies. The structures were determined using single-crystal X-ray diffraction and found to consist of [An(HO)Cl] ( = 4-7 and = 2-4) or AnCl molecular units. Breaks in the structural chemistry of the early actinides were observed, with Th adopting exclusively Th-aquo-chloro species and Pu forming only PuCl; U crystallized as both U-aquo-chloro and UCl. The relationship between the solid-state structural units and the solution species was interrogated using UV-vis-near-IR absorption spectroscopy. A comparison of the solution and solid-state spectra suggested that, although prevalent in the solid state, particularly for U and Pu, AnCl does not exist to an appreciable extent in the reaction solution. Despite the identification of U-aquo-chloro species in solution, there are limited reports of these complexes in the solid state. Isolation of these unique actinide(IV) chlorides as reported in this work may point to the importance of nonbonding interactions in the stabilization and precipitation of An structural units.
从含有钍、铀或钚的酸性水溶液以及一系列质子化氮杂环化合物中合成了一系列18种四价锕系元素(An = 钍、铀、钚)化合物。使用拉曼光谱、红外光谱和光吸收光谱对这些化合物进行了表征。通过单晶X射线衍射确定了其结构,发现它们由[An(HO)Cl](= 4 - 7且 = 2 - 4)或AnCl分子单元组成。观察到早期锕系元素结构化学中的间断情况,钍仅采用钍 - 水合 - 氯物种,钚仅形成PuCl;铀则以铀 - 水合 - 氯和UCl两种形式结晶。利用紫外 - 可见 - 近红外吸收光谱研究了固态结构单元与溶液物种之间的关系。溶液光谱和固态光谱的比较表明,尽管AnCl在固态中普遍存在,特别是对于铀和钚,但在反应溶液中AnCl的存在程度并不显著。尽管在溶液中鉴定出了铀 - 水合 - 氯物种,但关于这些配合物在固态中的报道有限。本工作中报道的这些独特的锕系元素(IV)氯化物的分离可能表明非键相互作用在An结构单元的稳定和沉淀中的重要性。