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首页> 外文期刊>ACS nano >Dimensional Control and Morphological Transformations of Supramolecular Polymeric Nanofibers Based on Cofacially-Stacked Planar Amphiphilic Platinum(II) Complexes
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Dimensional Control and Morphological Transformations of Supramolecular Polymeric Nanofibers Based on Cofacially-Stacked Planar Amphiphilic Platinum(II) Complexes

机译:基于Cofacially堆叠平面两亲铂(II)络合物的超分子聚合物纳米纤维的尺寸控制与形态转化

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摘要

Square-planar platinum(II) complexes often stack cofacially to yield supramolecular fiber-like structures with interesting photophysical properties. However, control over fiber dimensions and the resulting colloidal stability is limited. We report the self-assembly of amphiphilic Pt(II) complexes with solubilizing ancillary ligands based on polyethylene glycol [PEGn, where n = 16, 12, 7]. The complex with the longest solubilizing PEG ligand, Pt-PEG16, self-assembled to form polydisperse one-dimensional (1D) nanofibers (diameters <5 nm). Sonication led to short seeds which, on addition of further molecularly dissolved Pt-PEG16 complex, underwent elongation in a “living supramolecular polymerization” process to yield relatively uniform fibers of length up to ca. 400 nm. The fiber lengths were dependent on the Pt-PEG16 complex to seed mass ratio in a manner analogous to a living covalent polymerization of molecular monomers. Moreover, the fiber lengths were unchanged in solution after 1 week and were therefore “static” with respect to interfiber exchange processes on this time scale. In contrast, similarly formed near-uniform fibers of Pt-PEG12 exhibited dynamic behavior that led to broadening of the length distribution within 48 h. After aging for 4 weeks in solution, Pt-PEG12 fibers partially evolved into 2D platelets. Furthermore, self-assembly of Pt-PEG7 yielded only transient fibers which rapidly evolved into 2D platelets. On addition of further fiber-forming Pt complex (Pt-PEG16), the platelets formed assemblies via the growth of fibers selectively from their short edges. Our studies demonstrate that when interfiber dynamic exchange is suppressed, dimensional control and hierarchical structure formation are possible for supramolecular polymers through the use of kinetically controlled seeded growth methods.]]>
机译:<!图像/介质/ NN-2017-04069T_0012.GIF“>方形平面铂(II)复合物经常堆叠,以产生具有有趣的光药性性质的超分子纤维状结构。然而,控制纤维尺寸和所得的胶体稳定性有限。我们报道了基于聚乙二醇的溶解辅助配体的两亲性Pt(II)配合物的自组装[PEG ,其中 n = 16 ,12,7]。具有最长溶解的PEG配体的复合物, Pt-PEG <亚> 16 /倍>,自组装形成多分配一维(1D)纳米纤维(直径<5 nm)。超声处理导致短种子,除了进一步分子溶解的 pt-peg 16 / b>复合物,在“活超分子聚合”过程中进行的伸长率产生相对均匀的长度纤维,直至 Ca 。 400纳米。纤维长度依赖于与分子单体的生物共价聚合类似的方式以种子质量比取决于 pt-peg Pt-PEG的近似均匀纤维 12 显示的动态行为,其导致48h内的长度分布扩展。在溶液中老化4周后, Pt-PEG <亚> 12 纤维部分地进化成2D血小板。此外, Pt-PEG 7 / b> 的自组装仅产生瞬时纤维,该瞬态纤维迅速地进化为2D血小板。在添加进一步的纤维形成Pt络合物( Pt-peg 16 ),通过形成组件从其短边缘选择性地生长纤维。我们的研究表明,当抑制纤维动态交换时,通过使用动力学的种子生长方法,对超分子聚合物可以进行尺寸控制和分层结构。]]>

著录项

  • 来源
    《ACS nano》 |2017年第9期|共14页
  • 作者单位

    School of Chemistry and School of Physics University of Bristol Bristol BS8 1TS United Kingdom;

    School of Chemistry and School of Physics University of Bristol Bristol BS8 1TS United Kingdom;

    School of Chemistry and School of Physics University of Bristol Bristol BS8 1TS United Kingdom;

    School of Chemistry and School of Physics University of Bristol Bristol BS8 1TS United Kingdom;

    School of Chemistry and School of Physics University of Bristol Bristol BS8 1TS United Kingdom;

    UES Inc. and Materials and Manufacturing Directorate Air Force Research Laboratory Wright-Patterson Air Force Base Wright-Patterson AFB Ohio 45433 United States;

    School of Chemistry and School of Physics University of Bristol Bristol BS8 1TS United Kingdom;

    School of Chemistry and School of Physics University of Bristol Bristol BS8 1TS United Kingdom;

    School of Chemistry and School of Physics University of Bristol Bristol BS8 1TS United Kingdom;

    School of Chemistry and School of Physics University of Bristol Bristol BS8 1TS United Kingdom;

    ISIS and icFRC Université de Strasbourg and CNRS 8 Allée Gaspard Monge 67000 Strasbourg France;

    School of Chemistry and School of Physics University of Bristol Bristol BS8 1TS United Kingdom;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    kinetic control; living supramolecular polymerization; seeded growth; self-assembly; supramolecular polymers;

    机译:动力控制;生活超分子聚合;种子生长;自组装;超分子聚合物;

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