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具有“结构记忆”的含异金属多核锕系元素金属有机框架的热力学和电子性质

Thermodynamics and Electronic Properties of Heterometallic Multinuclear Actinide-Containing Metal-Organic Frameworks with "Structural Memory".

作者信息

Ejegbavwo Otega A, Martin Corey R, Olorunfemi Oyindamola A, Leith Gabrielle A, Ly Richard T, Rice Allison M, Dolgopolova Ekaterina A, Smith Mark D, Karakalos Stavros G, Birkner Nancy, Powell Brian A, Pandey Shubham, Koch Robert J, Misture Scott T, Loye Hans-Conrad Zur, Phillpot Simon R, Brinkman Kyle S, Shustova Natalia B

机构信息

Department of Chemistry and Biochemistry , University of South Carolina , Columbia , South Carolina 29208 , United States.

College of Engineering and Computing , University of South Carolina , Columbia , South Carolina 29208 , United States.

出版信息

J Am Chem Soc. 2019 Jul 24;141(29):11628-11640. doi: 10.1021/jacs.9b04737. Epub 2019 Jul 5.

Abstract

Thermodynamic studies of actinide-containing metal-organic frameworks (An-MOFs), reported herein for the first time, are a step toward addressing challenges related to effective nuclear waste administration. In addition to An-MOF thermochemistry, enthalpies of formation were determined for the organic linkers, 2,2'-dimethylbiphenyl-4,4'-dicarboxylic acid (HMeBPDC) and biphenyl-4,4'-dicarboxylic acid (HBPDC), which are commonly used building blocks for MOF preparation. The electronic structure of the first example of An-MOF with mixed-metal AnAn'-nodes was influenced through coordination of transition metals as shown by the density of states near the Fermi edge, changes in the Tauc plot, conductivity measurements, and theoretical calculations. The "structural memory" effect (i.e., solvent-directed crystalline-amorphous-crystalline structural dynamism) was demonstrated as a function of node coordination degree, which is the number of organic linkers per metal node. Remarkable three-month water stability was reported for Th-containing frameworks herein, and the mechanism is also considered for improvement of the behavior of a U-based framework in water. Mechanistic aspects of capping linker installation were highlighted through crystallographic characterization of the intermediate, and theoretical calculations of free energies of formation (Δ) for U- and Th-MOFs with 10- and 12-coordinated secondary building units (SBUs) were performed to elucidate experimentally observed transformations during the installation processes. Overall, these results are the first thermochemical, electronic, and mechanistic insights for a relatively young class of actinide-containing frameworks.

摘要

本文首次报道了含锕系元素的金属有机框架(An-MOFs)的热力学研究,这是朝着应对有效核废料管理相关挑战迈出的一步。除了An-MOF的热化学,还测定了有机连接体2,2'-二甲基联苯-4,4'-二羧酸(HMeBPDC)和联苯-4,4'-二羧酸(HBPDC)的生成焓,它们是MOF制备中常用的构建单元。如费米边缘附近的态密度、Tauc图变化、电导率测量和理论计算所示,具有混合金属AnAn'-节点的首个An-MOF实例的电子结构受过渡金属配位的影响。“结构记忆”效应(即溶剂导向的晶体-非晶体-晶体结构动态变化)被证明是节点配位数的函数,节点配位数是每个金属节点的有机连接体数量。本文报道了含钍框架具有显著的三个月水稳定性,还考虑了改善含铀框架在水中行为的机制。通过中间体的晶体学表征突出了封端连接体安装的机理方面,并对具有10配位和12配位二级构筑单元(SBU)的U-MOF和Th-MOF的生成自由能(Δ)进行了理论计算,以阐明安装过程中实验观察到的转变。总体而言,这些结果是对一类相对年轻的含锕系元素框架的首次热化学、电子和机理方面的见解。

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