Klepov Vladislav V, Juillerat Christian A, Alekseev Evgeny V, Zur Loye Hans-Conrad
Institute for Energy and Climate Research (IEK-6) , Forschungszentrum Jülich GmbH , 52428 Jülich , Germany.
Inorg Chem. 2019 Jan 7;58(1):724-736. doi: 10.1021/acs.inorgchem.8b02906. Epub 2018 Dec 7.
The synthesis of four non-Löwenstein uranyl aluminophosphates, [CsCl][(UO)AlO(PO)], Rb[AlO(PO)][(UO)O(PO)], Cs[AlO(PO)][(UO)O], and Rb[AlO(PO)][(UO)O], the first uranyl phosphate salt-inclusion material [CsCsCl][(UO)(PO)], and a related structure Cs[UOAl(PO)], all prepared by molten flux methods, is reported. All compounds are discussed from the point of view of their structural features favoring, in some cases, ion-exchange properties. Löwenstein's rule, well known in the realm of zeolites, aluminosilicate, and aluminophosphate minerals, describes the tendency of tetrahedra (Al, P, Si, and Ge) linked by an oxygen bridge to be of two different elements resulting in the avoidance of Al-O-Al bonds. Zeolites and related aluminosilicate/aluminophosphate minerals are traditionally formed under relatively mild temperatures, where zeolites are synthesized using the hydrothermal synthetic technique. Few exceptions to Löwenstein's rule are known among aluminophosphates, and four of the five exceptions are synthesized under either high temperature or high pressure methods. For that reason, the high-temperature flux synthesis of four new non-Löwenstein uranyl aluminophosphates realizes a unique synthetic approach to forming the new pyroaluminate-based building block, [AlO(PO)], that can be easily obtained and employed for the construction of new porous structures.
报道了通过熔盐法制备的四种非洛温斯坦型铀酰铝磷酸盐[CsCl][(UO)AlO(PO)]、Rb[AlO(PO)][(UO)O(PO)]、Cs[AlO(PO)][(UO)O]和Rb[AlO(PO)][(UO)O],第一种铀酰磷酸盐盐包合物[CsCsCl][(UO)(PO)],以及相关结构Cs[UOAl(PO)]。从它们的结构特征(在某些情况下有利于离子交换性能)的角度对所有化合物进行了讨论。洛温斯坦规则在沸石、铝硅酸盐和铝磷酸盐矿物领域广为人知,它描述了通过氧桥连接的四面体(Al、P、Si和Ge)倾向于由两种不同元素组成,从而避免Al-O-Al键的形成。传统上,沸石和相关的铝硅酸盐/铝磷酸盐矿物是在相对温和的温度下形成的,其中沸石是使用水热合成技术合成的。在铝磷酸盐中已知很少有洛温斯坦规则的例外情况,五个例外情况中有四个是通过高温或高压方法合成的。因此,四种新型非洛温斯坦型铀酰铝磷酸盐的高温熔盐合成实现了一种独特的合成方法,用于形成新的基于焦铝酸盐的结构单元[AlO(PO)],该结构单元可以很容易地获得并用于构建新的多孔结构。