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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Functional nanoscale metal-organic particles synthesized from a new vinylimidazole-based polymeric ligand and dysprosium ions
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Functional nanoscale metal-organic particles synthesized from a new vinylimidazole-based polymeric ligand and dysprosium ions

机译:用新的乙烯基咪唑基聚合物配体和镝离子合成的功能性纳米级金属 - 有机颗粒

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摘要

With nanoparticles (NPs) getting more and more crucial to various key technologies, it is essential to sustainedly develop new NPs with desirable functionalities. In this regard, nanoscale metal-organic particles (NMOPs) offer a competitive choice due to their highly tunable nature, whereas seeking new organic ligands (e.g. polymeric ones) represents a preferable research direction on NMOPs. With these points in mind, a water-and ethanol-soluble vinylimidazole-based polymer, poly[1-vinylimidazole-co-(poly(ethylene glycol) methacrylate)] (VI-co-PEGMA), was designed, synthesized, and demonstrated to be exactly such a new ligand. The formation of NPs through coordination-driven self-assembly of VI-co-PEGMA and dysprosium ions (Dy3+) was studied as functions of the molecular structure of VI-co-PEGMA, Dy3+ addition rate, mixing rate and duration, and Dy3+/VI-co-PEGMA feed ratio. The as-synthesized NPs exhibit bimodal dysprosium fluorescence and magnetism with a strong dependence on the coordinated Dy3+ contents. Moreover, these NPs may also possess guest loading capacity, as indicated by their amorphous nature and the high coordination number of Dy3+. By coating the NPs with silica shells, the resultant NP@silica materials further develop an anti-disassembling ability in aqueous media, which is absent from most of the NMOPs based on water-soluble ligands. An application demonstration performed using mouse L-929 cells shows that silica-coated NPs can act as bimodal magneto-fluorescent probes for cellular bioimaging. This work thus represents a meaningful attempt for the development of new functional NPs based on the existing NMOP strategy by using an elaborately designed polymer as the organic linker and Dy3+ as the metal center.
机译:纳米颗粒(NPS)对各种关键技术越来越重要,必须持续发展新的NP,具有理想的功能。在这方面,纳米级金属 - 有机颗粒(NMOPS)由于其高度可调谐性质而提供竞争性的选择,而寻找新的有机配体(例如聚合物)代表NMOPS的优选研究方向。通过考虑到这些点,设计,合成和证明了一种光谱的基于水和乙醇 - 可溶性乙烯基咪唑基聚合物,聚[1-乙烯基咪唑 - CO-(聚(乙二醇)](VI-CO-PEGMA)](VI-CO-COGMA)正好是一个如此新的配体。通过协调驱动的vi-co-pegma和镝离子(DY3 +)的形成NPS作为VI-Co-PEGMA,DY3 +添加速率,混合速率和持续时间的函数,以及DY3 + / VI-Co-PEGMA进料比。作为合成的NPS表现出双峰镝荧光和磁性,具有强依赖于协调DY3 +含量。此外,这些NPS还可能拥有客人加载能力,如其无定性性质和DY3 +的高协调数量所示。通过用二氧化硅壳涂覆NPS,所得NP @二氧化硅材料进一步发展水性介质中的抗拆卸能力,其基于水溶性配体的大部分NMOPS不存在。使用小鼠L-929细胞进行的应用演示表明,二氧化硅涂覆的NPS可以充当用于细胞生物成像的双峰磁荧光探针。因此,通过使用精心设计的聚合物作为有机接头和DY3 +作为金属中心,这项工作代表了基于现有的NMOP策略开发新功能NP的有意义的尝试。

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    Qingdao Univ Sci &

    Technol Sch Polymer Sci &

    Engn Shandong Prov Key Lab Rubber Plast Key Lab Rubber Plast Minist Educ Qingdao 266042 Peoples R China;

    Qingdao Univ Sci &

    Technol Sch Polymer Sci &

    Engn Shandong Prov Key Lab Rubber Plast Key Lab Rubber Plast Minist Educ Qingdao 266042 Peoples R China;

    Qingdao Univ Sci &

    Technol Sch Polymer Sci &

    Engn Shandong Prov Key Lab Rubber Plast Key Lab Rubber Plast Minist Educ Qingdao 266042 Peoples R China;

    Qingdao Univ Sci &

    Technol Sch Chem Engn Dept Pharmaceut Qingdao 266042 Peoples R China;

    Qingdao Univ Sci &

    Technol Sch Polymer Sci &

    Engn Shandong Prov Key Lab Rubber Plast Key Lab Rubber Plast Minist Educ Qingdao 266042 Peoples R China;

    Qingdao Univ Sci &

    Technol Sch Chem Engn Dept Pharmaceut Qingdao 266042 Peoples R China;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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