Department of Chemistry, University of Glasgow, Glasgow, G12 8QQ, UK.
Dalton Trans. 2010 Oct 28;39(40):9443-57. doi: 10.1039/c0dt00325e. Epub 2010 Aug 18.
The synthetic engineering of anionic polyoxometalate (POM) clusters with predefined properties tailored to specific applications is a great challenge using routine "one-pot" POM syntheses. Under such conditions, difficulties often arise from the multitude of complex reaction pathways and self-assembly processes occurring in solution. In this respect the major role of the charge balancing cations cannot be ignored, in fact such cations are crucial, both in the assembly of the building blocks, linkage to the overall cluster, and then assembly into the bulk material. Further, the role of the cation facilitating the selective crystallization of a particular cluster type cannot be divorced from the reaction process since the crystallization process itself can help pull "virtual" building blocks into being. This perspective briefly outlines our efforts towards engineering novel POM based materials, highlighting the use of large organic cations as "Shrink-wrapping" agents to isolate new POM clusters, frameworks and cage compounds. Central to this perspective is the hypothesis that, in the case of POM cluster assembly, the mechanism and various equilibria which define the clusters can be controlled by the selective crystallisation using cation control. Consequently, this indicates that the process of crystallisation can have a profound effect on self-assembly at the molecular level. We therefore propose that the crystallization process itself may define the molecular structure of the cluster leading to the conundrum, which came first, the cluster or the crystal of the cluster?
使用常规的“一锅法”多酸合成方法,对具有预定性质的阴离子多金属氧酸盐(POM)簇进行合成工程设计以适应特定应用是一项巨大的挑战。在这种情况下,通常会由于溶液中存在多种复杂的反应途径和自组装过程而导致困难。在这方面,电荷平衡阳离子的主要作用不可忽视,实际上,这些阳离子在组装构建块、与整体簇连接以及然后组装成块状材料方面都至关重要。此外,阳离子在促进特定簇类型的选择性结晶中的作用不能与其反应过程分离,因为结晶过程本身可以帮助将“虚拟”构建块拉成现实。本文简要概述了我们在工程新型基于 POM 的材料方面的努力,重点介绍了使用大有机阳离子作为“收缩包装”剂来隔离新型 POM 簇、框架和笼状化合物。本文的核心假设是,在 POM 簇组装的情况下,可以通过阳离子控制选择性结晶来控制定义簇的机制和各种平衡。因此,这表明结晶过程本身可以对分子水平的自组装产生深远影响。因此,我们提出结晶过程本身可能会定义簇的分子结构,从而产生一个难题,即首先是簇还是簇的晶体?