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基于氧化钼的独特多质子纳米酸在溶液中表现出不同的去质子化及相关组装过程。

Molybdenum-oxide based unique polyprotic nanoacids showing different deprotonations and related assembly processes in solution.

作者信息

Kistler Melissa L, Liu Tianbo, Gouzerh Pierre, Todea Ana Maria, Müller Achim

机构信息

Department of Chemistry, Lehigh University, 6 E. Packer Ave., Bethlehem, Pennsylvania 18015, USA.

出版信息

Dalton Trans. 2009 Jul 14(26):5094-100. doi: 10.1039/b901505a. Epub 2009 May 14.

Abstract

We report the self-assembly processes in solution of three Keplerate-type molybdenum-oxide based clusters {Mo72V30}, {Mo72Cr30} and {Mo72Fe30} (all with diameters of approximately 2.5 nm). These clusters behave as unique weak polyprotic acids owing to the external water ligands attached to the non-Mo metal centers. Whereas the Cr and Fe clusters have 30 water ligands attached at the 30 M3+ centers pointing outside, {Mo72V30} has 20 water ligands coordinated to vanadium atoms, of which only 10 are pointing outside. The self-assembly processes of the Keplerates leading to supramolecular blackberry-type structures are influenced by the effective charge densities on the cluster surfaces, which can be tuned by the pH values and solvent properties. As expected, {Mo72Cr30} and {Mo72Fe30} behave similarly in aqueous solution due to their analogous structures and in both cases the self-assembly follows the partial deprotonation of the external water ligands attached to the non-Mo metal centers. However, the M-OH2 functionalities differ not only in acidity but also lability, i.e. in different residence times of the H2O ligands. In contrast to {Mo72Cr30} and {Mo72Fe30}, the {Mo72V30} clusters carry a rather large number of negative charges so that their solution properties are different. They exist as discrete macroions in dilute aqueous solution, and form only in mixed water/organic solvent (like acetone) blackberry-type structures whose size increases with acetone content. The comparison of the properties of the clusters allows more general information about the interesting self-assembly phenomenon to be unveiled.

摘要

我们报道了三种基于开普勒型钼氧化物的簇合物{Mo72V30}、{Mo72Cr30}和{Mo72Fe30}(直径均约为2.5纳米)在溶液中的自组装过程。由于附着在非钼金属中心的外部水配体,这些簇合物表现为独特的弱多元酸。Cr和Fe簇合物在30个指向外部的M3+中心处附着有30个水配体,而{Mo72V30}有20个水配体与钒原子配位,其中只有10个指向外部。导致超分子黑莓型结构的开普勒簇合物的自组装过程受簇合物表面有效电荷密度的影响,而有效电荷密度可通过pH值和溶剂性质进行调节。正如预期的那样,{Mo72Cr30}和{Mo72Fe30}在水溶液中的行为相似,因为它们结构类似,在这两种情况下,自组装都遵循附着在非钼金属中心的外部水配体的部分去质子化过程。然而,M-OH2官能团不仅在酸度上不同,而且在活泼性上也不同,即H2O配体的停留时间不同。与{Mo72Cr30}和{Mo72Fe30}不同,{Mo72V30}簇带有相当多的负电荷,因此其溶液性质不同。它们在稀水溶液中以离散的大离子形式存在,并且仅在水/有机溶剂混合体系(如丙酮)中形成黑莓型结构,其尺寸随丙酮含量增加而增大。对这些簇合物性质的比较揭示了有关有趣的自组装现象的更一般信息。

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