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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Releasing Metal-Coordination Capacity of Cucurbit[6]uril Macrocycle in Pseudorotaxane Ligands for the Construction of Interwoven Uranyl-Rotaxane Coordination Polymers
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Releasing Metal-Coordination Capacity of Cucurbit[6]uril Macrocycle in Pseudorotaxane Ligands for the Construction of Interwoven Uranyl-Rotaxane Coordination Polymers

机译:释放葫芦(uil癌)在伪甲烷配体中释放金属配位容量,用于构建交织铀酰 - 旋转甲烷配位聚合物的构建

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摘要

As an emerging type of actinide hybrid material, uranyl rotaxane coordination polymers (URCPs) with new coordination patterns and topological structures are still desired. In this work, we propose a new strategy to construct URCPs by promoting the simultaneous coordination of both the wheel and axle moieties in pseudorotaxane linkers with metal nodes. Starting from a series of cucurbit[6]uril (CB[6])based pseudorotaxane ligands, CnBPCA@CB[6] [CnBPCA = 1,1-(alpha,omega-diyObis[4-(ethoxycarbonyl)pyridin-1-ium] bromides, where n = 5-8] with slightly deformed CB[6], four new URCPs (URCP1, URCP3, URCP4, and URCPS) with interwoven network structures, as well as another noninterwoven polymer(URCP2), have been successfully prepared. According to single-crystal structure analysis, we attribute the interwoven structures of the URCPs to the distortion of CB[6] in pseudorotaxane ligands with shorter or longer spacers (CS, C7, and C8). This indicates that the deformation could effectively diminish the steric hindrance around the portals, thus endowing the "inert" CB[6] host with coordination ability like the string molecule. Besides, the participation of water molecules and sulfate anions in the uranyl coordination sphere is also found to have a great influence on the final structures of the obtained URCPs. The successful preparation of interwoven URCPs in this work gives some new insights into the metal coordination of supramolecular entities and could facilitate other new applications of CB[6]-based pseudorotaxane ligands. Most importantly, the strategy proposed in this work provides some hints in the controllable design of metal organic rotaxane frameworks with unique topologies.
机译:作为新兴类型的抗肌苷杂化材料,仍然需要具有新的配位模式和拓扑结构的铀酰旋烷配位聚合物(URCP)。在这项工作中,我们提出了一种通过促进与金属节点伪横向插入层中的轮子和轴部分同时协调构建URCP的新策略。从一系列葫芦(CB [6])的伪曲调配体开始,CNBPCA @ CB [6] [CNBPCA = 1,1-(α,ω-亚紫外二(4-(乙氧基羰基)吡啶-1-Ium溴化物,其中N = 5-8]具有稍变形的CB [6],具有交织网络结构的四种新的URCP(URCP1,URCP3,URCP4和URCP4和URCP),以及另一种无炔聚合物(URCP2),已经成功地制备了根据单晶结构分析,将URCP的交织结构归因于具有较短或更长的间隔物(CS,C7和C8)的假体Xane配体中CB [6]的变形。这表明变形可以有效地减少门户网站周围的空间障碍,从而赋予“惰性”CB [6]主持人,如串分子等配位能力。此外,还发现铀酰协调球体中的水分子和硫酸根阴离子的参与对获得的URCP的最终结构。Interwov的成功准备在这项工作中的EN URCPS对超分子实体的金属协调提供了一些新的见解,并且可以促进CB [6]的其他新应用 - 基于伪偶联的配体。最重要的是,本作工作中提出的策略在具有独特拓扑的金属有机轮烷框架的可控设计中提供了一些暗示。

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