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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Cation mediated self-assembly of inorganic cluster anion building blocks
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Cation mediated self-assembly of inorganic cluster anion building blocks

机译:阳离子介导的无机团簇阴离子结构单元的自组装

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Polyoxometalate (POM) cluster anions form highly organized monolayers on planar surfaces, stabilize metal nanoparticles in solution, and serve as structural components of hollow, single-walled vesicles. Until recently, each of these classes of superstructures was viewed as fundamentally distinct. Now, however, new data show that metal nanoparticles serve as templates for the assembly of spherical, "metal-core"-supported POM monolayers. As such, POM-protected metal nanoparticles are pivotal members of a continuum that ranges from planar arrays to hollow-spheres. Moreover, it is now apparent that, in all three classes of superstructures, similar electrostatic forces between POMs and their counter-cations are intimately involved in self-assembly, structure and stability. This common role for counter-cations is the theme of this Perspective article. In it, we highlight the role of cation-anion interactions in the formation and structure of newly documented POM monolayers on metal nanoparticles, and establish a unifying principle for better understanding the self-assembly of diverse supramolecular structures from highly charged molecular-ion building blocks.
机译:多金属氧酸盐(POM)簇状阴离子在平面表面上形成高度有序的单层膜,稳定溶液中的金属纳米颗粒,并用作中空单壁囊泡的结构成分。直到最近,这些上层建筑中的每一个都被视为根本不同。但是,现在,新数据表明,金属纳米颗粒可作为组装球形,“金属芯”支撑的POM单层的模板。这样,POM保护的金属纳米颗粒是连续体的关键成员,其范围从平面阵列到空心球。而且,现在明显的是,在所有三类超结构中,POM及其反阳离子之间的相似静电力都直接参与了自组装,结构和稳定性。这种对抗阳离子的共同作用是此Perspective文章的主题。在其中,我们强调了阳离子-阴离子相互作用在金属纳米颗粒上新记录的POM单层的形成和结构中的作用,并建立了一个统一的原理,以更好地了解高电荷分子离子构造单元对各种超分子结构的自组装。

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