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Complex-decorated surfactant-encapsulated clusters (CD-SECs) as novel multidynamic hybrid materials

机译:Complex-decorated surfactant-encapsulated集群(CD-SECs)小说multidynamic混合材料

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Generation of well-defined organic-inorganic hybrid materials with controllable size and morphology is challenging and an active area of modern research in view of their unique properties and thus multifunctional applications. Specifically polyoxometalates (POMs) were recognized as a very promising group for the construction of those systems, nonetheless there are domains where the profound understanding of hierarchical mutual interactions and assembly are lacking. We present an efficient approach towards the synthesis of a novel group of POM-based nanocomposites that we name Complex-Decorated Surfactant Encapsulated-Clusters (CD-SECs). In the investigated system the organic surfactant may behave as a metal-coordinating agent, thus allowing for derivatization of the synthesized SECs via utilization of the non-covalent interactions. We demonstrate possibilities and limitations of three types of hybrid systems (H1-H3) generated via seven distinct constructing approaches (routes A-G). These systems have the potential to exhibit multiresponsive functions depending on the nature of their building blocks and could find many potential applications in biology or materials science.
机译:代的定义良好的有机-无机混合动力与可控尺寸和材料形态是具有挑战性和一个活跃的领域现代研究对他们独特的看法属性,因此多功能应用。特别是杂多酸(盐)被认为是一群非常有前途的这些系统建设,尽管如此领域的深刻理解吗层次相互交互和组装缺乏。合成的一种新型群POM-based我们的名字Complex-Decorated纳米复合材料表面活性剂Encapsulated-Clusters (CD-SECs)。有机表面活性剂的研究系统可能像metal-coordinating代理,因此允许衍生的合成通过利用共价秒交互。三种类型的混合动力系统的局限性通过七个不同的构造(H1-H3)生成的方法(g)。可能表现出multiresponsive功能根据他们的构建块的性质能找到很多潜在的应用生物学和材料科学。

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