Martin Corey R, Leith Gabrielle A, Shustova Natalia B
Department of Chemistry and Biochemistry, University of South Carolina Columbia South Carolina 29208 USA
Chem Sci. 2021 May 13;12(21):7214-7230. doi: 10.1039/d1sc01827b.
In this perspective, we feature recent advances in the field of actinide-containing metal-organic frameworks (An-MOFs) with a main focus on their electronic, catalytic, photophysical, and sorption properties. This discussion deviates from a strictly crystallographic analysis of An-MOFs, reported in several reviews, or synthesis of novel structural motifs, and instead delves into the remarkable potential of An-MOFs for evolving the nuclear waste administration sector. Currently, the An-MOF field is dominated by thorium- and uranium-containing structures, with only a few reports on transuranic frameworks. However, some of the reported properties in the field of An-MOFs foreshadow potential implementation of these materials and are the main focus of this report. Thus, this perspective intends to provide a glimpse into the challenges, triumphs, and future directions of An-MOFs in sectors ranging from the traditional realm of gas sorption and separation to recently emerging areas such as electronics and photophysics.
从这个角度来看,我们重点介绍了含锕系元素的金属有机框架(An-MOFs)领域的最新进展,主要关注其电子、催化、光物理和吸附特性。本讨论不同于一些综述中对An-MOFs进行的严格晶体学分析,也不同于新型结构基序的合成,而是深入探讨了An-MOFs在核废料管理领域的巨大潜力。目前,An-MOF领域主要由含钍和含铀结构主导,关于超铀框架的报道较少。然而,An-MOFs领域已报道的一些特性预示着这些材料的潜在应用,这也是本报告的主要关注点。因此,本视角旨在简要介绍An-MOFs在从传统的气体吸附和分离领域到电子和光物理等新兴领域的挑战、成就及未来发展方向。