Nelson Anna-Gay D, Bray Travis H, Zhan Wei, Haire Richard G, Sayler Todd S, Albrecht-Schmitt Thomas E
Department of Chemistry and Biochemistry and Center for Actinide Science, Auburn University, Auburn, Alabama 36849, USA.
Inorg Chem. 2008 Jun 2;47(11):4945-51. doi: 10.1021/ic800255h. Epub 2008 May 2.
In situ hydrothermal reduction of Np(VI) to Np(IV) in the presence of methylenediphosphonic acid (C1P2) results in the crystallization of NpCH2(PO3)22 (NpC1P2-1). Similar reactions have been explored with U(VI) resulting in the isolation of the U(IV) diphosphonate UCH2(PO3)2 (UC1P2-1), and the two U(VI) diphosphonates (UO2)2CH2(PO3)23.H2O (UC1P2-2) and UO2CH2(PO3H)2 (UC1P2-3). Single crystal diffraction studies of NpC1P2-1 reveal that it consists of eight-coordinate Np(IV) bound by diphosphonate anions and two coordinating water molecules to create a polar three-dimensional framework structure wherein the water molecules reside in channels. The structure of UC1P2-1 is similar to that of NpC1P2-1 in that it also adopts a three-dimensional structure. However, the U(IV) centers are seven-coordinate with only a single bound water molecule. UC1P2-2 and UC1P2-3 both contain U(VI). Nevertheless, their structures are quite distinct with UC1P2-2 being composed of corrugated layers containing UO 6 and UO 7 units bridged by C1P2; whereas, UC1P2-3 is found as a polar three-dimensional network structure containing only pentagonal bipyramidal U(VI). Fluorescence measurements on UC1P2-2 and UC1P2-3 exhibit emission from the uranyl moieties with classical vibronic fine-structure.
在亚甲基二膦酸(C1P2)存在下,将Np(VI)原位水热还原为Np(IV),会导致NpCH2(PO3)22(NpC1P2-1)结晶。已对U(VI)进行了类似反应,得到了U(IV)二膦酸盐UCH2(PO3)2(UC1P2-1),以及两种U(VI)二膦酸盐(UO2)2CH2(PO3)23.H2O(UC1P2-2)和UO2CH2(PO3H)2(UC1P2-3)。对NpC1P2-1的单晶衍射研究表明,它由八配位的Np(IV)组成,Np(IV)与二膦酸根阴离子和两个配位水分子结合,形成一个极性三维框架结构,其中水分子位于通道中。UC1P2-1的结构与NpC1P2-1相似,也采用三维结构。然而,U(IV)中心为七配位,只有一个结合水分子。UC1P2-2和UC1P2-3都含有U(VI)。尽管如此,它们的结构有很大不同,UC1P2-2由含有通过C1P2桥连的UO6和UO7单元的波纹层组成;而UC1P2-3是一种仅包含五角双锥U(VI)的极性三维网络结构。对UC1P2-2和UC1P2-3的荧光测量显示,铀酰部分发出具有经典振动精细结构的发射光。