Mining for Metal-Organic Systems: Chemistry Frontiers of Th-, U-, and Zr-Materials

  • Kyoung Chul Park
  • , Jaewoong Lim
  • , Grace C. Thaggard
  • , Natalia B. Shustova

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

The conceptual framework presented in this Perspective overviews the design principles of innovative thorium-based materials that could address urgent needs of the medicinal, nuclear energy, and waste remediation sectors from the lens of zirconium and uranium analogs. We survey the intersections of Zr, Th, and U chemistry with a focus on how the intrinsic behavior of each metal translates to broader material properties, including, but not limited to, structural and topological diversity, preferential metal-ligand binding, and reactivity. On the example of several classes of materials, including organometallic complexes, polyoxometalates, and the primary focus of this Perspective, metal-organic frameworks (MOFs), the design principles that govern the preparation of Zr-, Th-, and U-compounds, including oxophilicity, variation in oxidation states, and stable coordination environments have been considered. Further, we highlight how the impact of the mentioned variables may shift throughout the progression from discrete molecular systems to extended structures. We discuss the common assumption that zirconium-organic materials are typically considered a close analog of thorium-based congeners in areas such as material design and preparation. Through consideration of fundamental chemistry principles, we shed light on the relationships between Zr-, Th-, and U-based materials and highlight how a critical analysis of their distinct properties can be used to target a desired material performance. As a result, we provide a detailed understanding of Th-based materials chemistry by anchoring their fundamental properties between two well-studied reference points, zirconium- and uranium-containing analogs.

Original languageEnglish
Pages (from-to)18189-18204
Number of pages16
JournalJournal of the American Chemical Society
Volume146
Issue number27
DOIs
StatePublished - 10 Jul 2024

Bibliographical note

Publisher Copyright:
© 2024 American Chemical Society

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