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Self-Assembly and lonic-Lattice-like Secondary Structure of a Flexible Linear Polymer of Highly Charged Inorganic Building Blocks

机译:高电荷的无机结构单元的柔性线性聚合物的自组装和离子格子状二级结构

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摘要

Among molecular building blocks, metal oxide cluster anions and their countercations provide multiple options for the self-assembly of functional materials. Currently, however, rational design concepts are limited to electrostatic interactions with metal or organic countercations or to the attachment and subsequent reactions of functionalized organic ligands. We now demonstrate that bridging μ-oxo linkages can be used to string together a bifunctional Keggin anion building block, [PNb_2Mo_(10)O_(40)]~(5-) (1), the diniobium(V) analogue of [PV_2Mo_(10)O_(40)]~(5-) (2). Induction of μ-oxo ligation between the Nb~V=O moieties of 1 in acetonitrile via step-growth polymerization gives linear polymers with entirely inorganic backbones, some comprising over 140 000 repeating units, each with a 3- charge, exceeding that of previously reported organic or inorganic polyelectrolytes. As the chain grows, its flexible μ-oxo-linked backbone, with associated countercations, coils into a compact 270 nm diameter spherical secondary structure as a result of electrostatic interactions not unlike those within ionic lattices. More generally, the findings point to new options for the rational design of multidimensional structures based on μ-oxo linkages between Nb~V=O-functionalized building blocks.
机译:在分子结构单元中,金属氧化物簇阴离子及其抗衡阳离子为功能材料的自组装提供了多种选择。然而,目前,合理的设计概念限于与金属或有机抗衡阳离子的静电相互作用或功能化有机配体的附着和随后的反应。现在,我们证明桥接μ-氧代键可用于将双功能Keggin阴离子构件[PNb_2Mo_(10)O_(40)]〜(5-)(1)串在一起,这是[PV_2Mo_的二铌(V)类似物(10)O_(40)]〜(5-)(2)。通过逐步增长聚合反应,在乙腈中Nb〜V = O部分1之间的μ-氧代连接引发线性聚合物完全具有无机主链,其中一些包含超过140 000个重复单元,每个单元带有3个电荷,超过了以前的水平。报道了有机或无机聚电解质。随着链的增长,由于静电相互作用,与离子晶格内的相互作用不同,其柔性的μ-氧代连接的主链以及相关的抗衡阳离子盘绕成直径为270 nm的紧凑球形二级结构。更普遍地说,研究结果为基于Nb〜V = O功能化构件之间的μ-氧键的多维结构合理设计提供了新的选择。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第16期|7295-7300|共6页
  • 作者单位

    Department of Chemistry and the Use Katz Institute for Nanoscale Science & Technology Ben-Gurion University of the Negev Beer Sheva 84105 Israel;

    South China Advanced Institute for Soft Matter Science and Technology & State Key Laboratory of Luminescent Materials and Devices South China University of Technology Guangzhou 510640 China;

    Departament de Quimica Fisica i Inorganica Universitat Rovira i Virgili E-43007 Tarragona Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 05:28:40

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