首页> 外文期刊>Journal of the American Chemical Society >Deprotonations and charges of well-defined {Mo72Fe30} nanoacids simply stepwise tuned by pH allow control/variation of related self-assembly processes
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Deprotonations and charges of well-defined {Mo72Fe30} nanoacids simply stepwise tuned by pH allow control/variation of related self-assembly processes

机译:只需通过pH逐步调节的明确定义的{Mo72Fe30}纳米酸的去质子和电荷,即可控制/改变相关的自组装过程

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The solution behavior of the largest inorganic acid known thus far, the neutral, spherical iron/molybdenum/oxide nanocluster {Mo72Fe30} (equivalent to{(Mo-VI)Mo-5(VI)}(12)Fe-30(III) 1a), including the pH-controlled deprotonation, is reported. The acidic properties are due to the 30 peripheral, weakly acidic Fe-III(H2O) groups that form a unique Archimedean solid with all edges and dihedral angles being equal, the icosidodecahedron, and therefore an "isotropic" surface. Interestingly, the aqueous solutions are stable even for months because of the inertness of the spherical solutes and the presence of the hard FeIII and Mo-VI centers. The stability can be nicely proven by the very characteristic Raman spectrum showing, because of the (approximately) icosahedral symmetry, only a few lines. Whereas the {Mo72Fe30} clusters exist as discrete, almost neutral, molecules in aqueous solution at pH < 2.9, they get deprotonated and self-associate into single-layer blackberry-type structures at higher pH while the assembly process (i.e., the size of the final species) can be controlled by the pH values; this allows the deliberate generation of differently sized nanoparticles, a long-term goal in nanoscience. The average hydrodynamic radius (R-h) of the self-assembled structures decreases monotonically with increasing number of charges on the {Mo72Fe30} macroanions (from similar to 45 nm at pH similar to 3.0 to similar to 15 nm at pH approximate to 6.6), as studied by laser light scattering and TEM techniques. The {Mo72Fe30} macroions with high-stability tunable charges/surfaces, equal shape, and masses provide models for the understanding of more complex polyelectrolyte solutions while the controllable association and dissociation reported here of the assembled soft magnetic materials with tuneable sizes could be interesting for practical applications.
机译:迄今为止已知的最大无机酸,中性球形铁/钼/氧化物纳米簇{Mo72Fe30}(相当于{(Mo-VI)Mo-5(VI)}(12)Fe-30(III)报道了包括pH控制的去质子化的1a)。酸性是由于30个外围弱酸性Fe-III(H2O)基团形成的,独特的阿基米德固体,其所有边缘和二面角均相等,二十碳十二面体,因此具有“各向同性”的表面。有趣的是,由于球形溶质的惰性以及硬的FeIII和Mo-VI中心的存在,水溶液甚至可以稳定几个月。通过非常特征的拉曼光谱可以很好地证明稳定性,因为(近似)二十面体对称,只有几条线。 {Mo72Fe30}团簇在pH <2.9的水溶液中以离散,几乎中性的分子形式存在,但在组装过程中,它们的去质子化并在更高的pH值下自缔合为单层黑莓型结构(即,最终物种)可以通过pH值控制;这允许故意生成不同尺寸的纳米粒子,这是纳米科学的长期目标。自组装结构的平均流体动力学半径(Rh)随着{Mo72Fe30}大阴离子上电荷的增加而单调降低(从pH值接近于45 nm(类似于3.0)到pH值接近于15 nm(接近于6.6)),通过激光散射和TEM技术进行了研究。具有高稳定性可调节电荷/表面,相等形状和质量的{Mo72Fe30}宏离子为理解更复杂的聚电解质溶液提供了模型,而此处报道的具有可调节尺寸的已组装软磁材料的可控缔合和解离可能对实际应用。

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