Burns Peter C, Nyman May
Department of Civil and Environmental Engineering and Earth Sciences, University of Notre Dame, Notre Dame, IN 46556, USA and Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, IN 46556, USA.
Department of Chemistry, Oregon State University, Corvallis, OR 97331, USA.
Dalton Trans. 2018 May 1;47(17):5916-5927. doi: 10.1039/C7DT04245K.
Uranyl peroxide clusters containing from 16 to 124 uranyl ions self-assemble in aqueous solution and exhibit tremendous topological complexity. Most of these clusters are cages, with the inside and outside surfaces passivated by oxygen atoms that are triply bonded to U(vi) cations (yl oxygen). It has become increasing apparent that the counter cations associated with these anionic cage clusters impact their assembly, topologies, and behavior in solution, including aggregation and aqueous solubility. Here we review the chemical compositions and topologies of uranyl peroxide clusters. We focus attention on the role of counter cations in cluster assembly, the properties of clusters in solution including supramolecular assembly, thermodynamic studies, and endohedral encapsulation. We also review the most useful solution characterization techniques of the counter cations and counter cation-capsule interactions. Potential applications in nuclear fuel cycles are discussed, including exerting nanoscale control of actinides to revolutionize separation technologies and provide novel pathways to nuclear materials including fuels, and an improved understanding of the transport of uranium in various systems. Finally, we elucidate some future directions.
含有16至124个铀酰离子的过氧化铀酰簇在水溶液中自组装,并表现出极大的拓扑复杂性。这些簇中的大多数是笼状结构,其内外表面被与U(VI)阳离子(酰氧)三重键合的氧原子钝化。越来越明显的是,与这些阴离子笼状簇相关的抗衡阳离子会影响它们在溶液中的组装、拓扑结构和行为,包括聚集和水溶性。在这里,我们综述了过氧化铀酰簇的化学组成和拓扑结构。我们重点关注抗衡阳离子在簇组装中的作用、溶液中簇的性质,包括超分子组装、热力学研究和内包封。我们还综述了抗衡阳离子和抗衡阳离子-胶囊相互作用最有用的溶液表征技术。讨论了在核燃料循环中的潜在应用,包括对锕系元素进行纳米级控制以彻底改变分离技术,并为包括燃料在内的核材料提供新途径,以及更好地理解铀在各种系统中的传输。最后,我们阐明了一些未来的方向。