Yue Zenghui, Guo Xiaofeng, Feng Mei-Ling, Lin Yue-Jian, Ju Yu, Lin Xiao, Zhang Zhi-Hui, Guo Xiaojing, Lin Jian, Huang Yu-Ying, Wang Jian-Qiang
Key Laboratory of Interfacial Physics and Technology , Shanghai Institute of Applied Physics, Chinese Academy of Sciences , 2019 Jia Luo Road , Shanghai 201800 , China.
University of Chinese Academy of Sciences , No. 19(A) Yuquan Road , Shijingshan District, Beijing 100049 , China.
Inorg Chem. 2020 Feb 17;59(4):2348-2357. doi: 10.1021/acs.inorgchem.9b03182. Epub 2020 Feb 4.
The directing effect of coordinating ligands in the formation of uranium molecular complexes has been well established, but the role of counterions in metal-ligand interactions remains ambiguous and requires further investigation. In this work, we describe the targeted isolation, through the choice of alkali-metal ions, of a family of tetravalent uranium sulfates, showing the influence of the overall topology and, unexpectedly, the U nuclearity upon the inclusion of such countercations. Analyses of the structures of uranium(IV) oxo/hydroxosulfate oligomeric species isolated from consistent synthetic conditions reveal that the incorporation of Na and Rb promotes the crystallization of 0D discrete clusters with a hexanuclear [UO(OH)(HO)] core, whereas the larger Cs ion allows for the isolation of a 2D-layered oligomer with a less condensed trinuclear [U(O)] center. This finding expands the prevalent view that counterions play an innocent role in molecular complex synthesis, affecting only the overall packing but not the local oligomerization. Interestingly, trends in nuclearity appear to correlate with the hydration enthalpies of alkali-metal cations, such that the alkali-metal cations with larger hydration enthalpies correspond to more hydrated complexes and cluster cores. These findings afford new insights into the mechanism of nucleation of U, and they also open a new path for the rational design and synthesis of targeted molecular complexes.
配位配体在铀分子配合物形成过程中的导向作用已得到充分证实,但抗衡离子在金属-配体相互作用中的作用仍不明确,需要进一步研究。在这项工作中,我们描述了通过选择碱金属离子有针对性地分离出一族四价铀硫酸盐,展示了整体拓扑结构的影响,并且出乎意料地展示了此类抗衡阳离子的加入对铀核数的影响。对在一致合成条件下分离出的铀(IV)氧代/羟基硫酸根低聚物种的结构分析表明,钠和铷的掺入促进了以六核[UO(OH)(HO)]为核心的零维离散簇的结晶,而较大的铯离子则使得能够分离出具有不太密集的三核[U(O)]中心的二维层状低聚物。这一发现扩展了普遍观点,即抗衡离子在分子配合物合成中起无关紧要的作用,仅影响整体堆积而不影响局部低聚。有趣的是,核数趋势似乎与碱金属阳离子的水合焓相关,使得具有较大水合焓的碱金属阳离子对应于水合程度更高的配合物和簇核心。这些发现为铀的成核机制提供了新的见解,也为有针对性的分子配合物的合理设计和合成开辟了一条新途径。