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Phosphorescent and semiconductive fiber-like micelles formed by platinum(II) complexes and block copolymers

机译:铂(II)配合物和嵌段共聚物形成的磷光和半导体纤维状胶束

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摘要

The electrostatic self-assembly of cationic platinum(II) complexes with negatively charged block copolymers in water leads to the formation of fiber-like micelles with a platinum(II)-based ionic core surrounded by a poly(ethylene oxide) corona. The structural details are well documented by various microscopic observations, small-angle X-ray scattering, and wide-angle X-ray scattering. In the fiber-like micelles, the superstrong segregation regime appears unexpectedly, where the half widths of the ionic cores correspond to the lengths of fully stretched anionic blocks. Both the phosphorescent intensities and quantum yields increase remarkably, due to the presence of strong Pt(II)center dot center dot center dot Pt(II) and pi-pi stacking interactions. Conductive atomic force microscopy measurements reveal that the individual nanofibers possess recognizable conductivity. The semi-conductive behaviors are further supported by electrochemical impedance measurements. The negative slopes obtained from Mott-Schottky plots of 1/C-2 versus potential suggest that these nanofibers are p-type semiconductors. However, in the fiber-like micelles, the intense phosphorescence occurs synchronously with the appreciable conductivity. Considering highly available square-planar d(8) transition metal complexes that prefer to form metal-metal and pi-pi stacking interactions, the present strategy represents a novel approach for exploring intensely phosphorescent and appreciably conductive fiber-like materials.
机译:阳离子铂(II)复合物的静电自组装在水中具有带负电荷的嵌段共聚物导致纤维状胶束的形成,其中由聚(环氧乙烷)电晕包围的铂(II)基于离子芯。结构细节通过各种微观观察,小角度X射线散射和广角X射线散射进行了很好的记录。在纤维状胶束中,超出偏析制度意外地出现,其中离子芯的半宽对应于完全拉伸的阴离子块的长度。由于存在强Pt(ii)中心点中心点中心点Pt(II)和PI-PI堆叠相互作用,磷光强度和量子产量均显着增加。导电原子力显微镜测量揭示了个体纳米纤维具有可识别的电导率。通过电化学阻抗测量进一步支持半导体行为。从1 / C-2的Mott-肖特基图获得的负斜面与潜力相比,这些纳米纤维是p型半导体。然而,在纤维状胶束中,强磷光率与明显的导电率同步发生。考虑到高度可用的方形平面D(8)过渡金属配合物,其优选形成金属 - 金属和PI-PI堆叠相互作用,该策略代表了一种探索强烈磷光和明显导电纤维状材料的新方法。

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    Lanzhou Univ Key Lab Nonferrous Met Chem &

    Resources Utilizat State Key Lab Appl Organ Chem Lanzhou 730000 Gansu Peoples R China;

    Lanzhou Univ Key Lab Nonferrous Met Chem &

    Resources Utilizat State Key Lab Appl Organ Chem Lanzhou 730000 Gansu Peoples R China;

    Lanzhou Univ Key Lab Nonferrous Met Chem &

    Resources Utilizat State Key Lab Appl Organ Chem Lanzhou 730000 Gansu Peoples R China;

    Zhengzhou Univ Sch Mat Sci &

    Engn Zhengzhou 450002 Henan Peoples R China;

    Lanzhou Univ Key Lab Nonferrous Met Chem &

    Resources Utilizat State Key Lab Appl Organ Chem Lanzhou 730000 Gansu Peoples R China;

    Zhengzhou Univ Sch Mat Sci &

    Engn Zhengzhou 450002 Henan Peoples R China;

    Lanzhou Univ Key Lab Nonferrous Met Chem &

    Resources Utilizat State Key Lab Appl Organ Chem Lanzhou 730000 Gansu 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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