Department of Civil Engineering and Geological Sciences, University of Notre Dame, Notre Dame, IN 46556, USA.
Dalton Trans. 2012 Jun 28;41(24):7278-84. doi: 10.1039/c2dt30229b. Epub 2012 May 9.
Two complex cage clusters built from uranyl hexagonal bipyramids and multiple types of bridges between uranyl ions, U(30)Py(10)Ox(5) and U(38)Py(10)Nt(4), were crystallized from aqueous solution under ambient conditions. These are built from 30 uranyl hexagonal bipyramids, 10 pyrophosphate groups, and five oxalate bridges in one case, and 38 uranyl hexagonal bipyramids, 10 pyrophosphate groups, and four nitrate groups in the other. The crystal compositions are (H(3)O)(10)Li(18)K(22)(UO(2))(30)(O(2))(30)(P(2)O(7))(10)(C(2)O(4))(5)(22) and Li(24)K(36)(UO(2))(38)(O(2))(40)(OH)(8)(P(2)O(7))(10)(NO(3))(4)(4)(H(2)O)(n) for U(30)Py(10)Ox(5) and U(38)Py(10)Nt(4), respectively. Cluster U(30)Py(10)Ox(5) crystallizes over a narrow range of solution pH that encourages incorporation of both oxalate and pyrophosphate, with incorporation of oxalate only being favored under more acidic conditions, and pyrophosphate only under more alkaline conditions. Cluster U(38)Py(10)Nt(4) contains two identical lobes consisting of uranyl polyhedra and pyrophosphate groups, with these lobes linked into the larger cluster through four nitrate groups. The synthesis conditions appear to have prevented closure of these lobes, and a relatively high nitrate concentration in solution favored formation of the larger cluster.
两个由铀酰六方双锥和铀酰离子之间的多种桥连组成的复杂笼状簇合物,U(30)Py(10)Ox(5)和 U(38)Py(10)Nt(4),是在环境条件下从水溶液中结晶得到的。其中一个由 30 个铀酰六方双锥、10 个焦磷酸根和 5 个草酸根桥连组成,另一个由 38 个铀酰六方双锥、10 个焦磷酸根和 4 个硝酸根桥连组成。晶体组成分别为(H(3)O)(10)Li(18)K(22)(UO(2))(30)(O(2))(30)(P(2)O(7))(10)(C(2)O(4))(5)(22)和 Li(24)K(36)(UO(2))(38)(O(2))(40)(OH)(8)(P(2)O(7))(10)(NO(3))(4)(4)(H(2)O)(n),分别对应于 U(30)Py(10)Ox(5)和 U(38)Py(10)Nt(4)。U(30)Py(10)Ox(5)笼状簇合物在溶液 pH 值较窄的范围内结晶,这有利于草酸根和焦磷酸根的同时掺入,只有在更酸性的条件下才有利于草酸根掺入,而只有在更碱性的条件下才有利于焦磷酸根掺入。U(38)Py(10)Nt(4)笼状簇合物包含两个由铀酰多面体和焦磷酸根组成的相同叶瓣,这些叶瓣通过四个硝酸根桥连到更大的簇合物中。合成条件似乎阻止了这些叶瓣的闭合,而溶液中较高的硝酸根浓度有利于形成更大的簇合物。