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首页> 外文期刊>Journal of the American Chemical Society >Wheel-shaped polyoxotungstate [Cu20Cl(OH)(24)(H2O)(12)(P8W48O184)](25-) macroanions form supramolecular 'blackberry' structure in aqueous solution - art. no. JA0610840
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Wheel-shaped polyoxotungstate [Cu20Cl(OH)(24)(H2O)(12)(P8W48O184)](25-) macroanions form supramolecular 'blackberry' structure in aqueous solution - art. no. JA0610840

机译:轮状聚氧钨酸盐[Cu20Cl(OH)(24)(H2O)(12)(P8W48O184)](25-)大阴离子在水溶液中形成超分子“黑莓”结构-技术。没有。 JA0610840

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摘要

The hydrophilic polyoxotungstate [Cu20Cl(OH)(24)(H2O)(12)(P8W48O184)](25-) ({Cu20P8W48}) self-assembles into single-layer, hollow, spherical "blackberry"-type structures in aqueous solutions, as studied by dynamic light scattering (DLS), static light scattering (SLS), zeta potential analysis, and scanning electron microscopy (SEM) techniques. This represents the first report of blackberry formation for a non-Mo-containing polyoxometalate. There is no obvious change in the shape and size of the blackberries during the slow blackberry formation process, neither with macroionic concentration nor with temperature. Our results suggest that the blackberry-type structure formation is most likely a general phenomenon for hydrophilic macroions with suitable size and charge in a polar solvent, and not a specific property of polyoxomolybdates and their derivatives. The {Cu20P8W48} macroions are thus far the smallest type of macroions to date (equivalent radius < 2 nm) showing the unique self-assembly behavior, helping us to move one step closer toward identifying the transition point from simple ions (can be described by the Debye-Huckel theory) to macroions in very dilute solutions. Moreover, by using {Cu20P8W48} blackberry-type structures as the model system, the electrophoretic properties of macroionic supramolecular structures are studied for the first time via zeta-potential analysis. The mobility of blackberry- type structures is determined and used for understanding the state of small cations in solution. We notice that the average charge density on each {Cu20P8W48} macroanion in a blackberry is much lower than that of discrete "free" {Cu20P8W48} macroions. This result suggests that some small alkali counterions are closely associated with, or even incorporated into, the blackberry- type structures and thus do not contribute to solution conductivity. This model is fully consistent with our speculation that monovalent counterions play an important role in the self-assembly of macroions, possibly providing an attractive force contributing to blackberry formation.
机译:亲水性聚氧钨酸盐[Cu20Cl(OH)(24)(H2O)(12)(P8W48O184)] [25-)({Cu20P8W48})在水溶液中自组装成单层,空心,球形的“黑莓”型结构,通过动态光散射(DLS),静态光散射(SLS),ζ电位分析和扫描电子显微镜(SEM)技术进行研究。这是第一个关于无钼多金属氧酸盐形成黑莓的报道。在缓慢的黑莓形成过程中,黑莓的形状和大小没有明显变化,无论是大分子离子浓度还是温度都没有。我们的结果表明,黑莓型结构的形成最有可能是亲水性大分子在极性溶剂中具有适当大小和电荷的普遍现象,而不是聚氧钼酸盐及其衍生物的特定性质。 {Cu20P8W48}宏子是迄今为止迄今为止显示出独特自组装行为的最小型宏子(等效半径<2 nm),有助于我们更进一步地从简单离子中识别出转变点(可以描述为Debye-Huckel理论)到非常稀溶液中的大分子。此外,以{Cu20P8W48}黑莓型结构为模型系统,通过ζ电势分析首次研究了大分子超分子结构的电泳性能。确定黑莓型结构的迁移率,并将其用于理解溶液中小阳离子的状态。我们注意到,黑莓中每个{Cu20P8W48}宏阴离子的平均电荷密度远低于离散的“游离” {Cu20P8W48}宏离子的平均电荷密度。该结果表明,一些小的碱抗衡离子与黑莓型结构密切相关,甚至并入其中,因此对溶液的电导率没有贡献。该模型与我们的推测完全一致,即一价抗衡离子在巨离子的自组装中起着重要作用,可能提供了有助于黑莓形成的吸引力。

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