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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Cyclic and acyclic oligo(N2O2) ligands for cooperative multi-metal complexation
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Cyclic and acyclic oligo(N2O2) ligands for cooperative multi-metal complexation

机译:环状和非环状低聚(N2O2)配体,用于多金属配合配合

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This review describes the design and synthesis of hosts based on salen or related N2O2 ligands, which are useful for the development of cooperative metal complexation systems. A key to the design of the N2O2-based metallohosts is the negative charges of the phenoxo groups, which further coordinate to metal ions in a bridging fashion. In particular, the integration of two or more N2O2 coordination sites is effective for the construction of metallohosts. A variety of cyclic and acyclic oligo(N2O2) compounds were designed and synthesized. They show unique complexation behavior due to the integrated coordination sites. For examples, cyclic tris(N2O2) ligands formed novel cluster complexes and acyclic bis(N2O2) ligands bind alkaline earth and rare earth metal ions in the central recognition site via metal exchange. The suitable arrangement of the phenoxo moieties contributes to the preorganization for the cooperative metal complexation, producing metallocyclic or metallohelical structures.
机译:这篇综述描述了基于Salen或相关的N2O2配体的宿主的设计和合成,可用于开发协同金属络合系统。基于N2O2的金属主体的设计关键是苯氧基的负电荷,它们以桥联方式进一步与金属离子配合。特别地,两个或更多个N 2 O 2配位位点的整合对于金属主体的构建是有效的。设计并合成了多种环状和无环的低聚(N2O2)化合物。由于具有整合的协调位点,它们显示出独特的络合行为。例如,环状三(N2O2)配体形成新型簇络合物,无环双(N2O2)配体通过金属交换结合中央识别位点中的碱土金属和稀土金属离子。苯氧羰基部分的适当排列有助于协同金属络合的预组织,产生金属环或金属螺旋结构。

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