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A Redox Responsive, Fluorescent Supramolecular Metallohydrogel Consists of Nanofibers with Single-Molecule Width

机译:氧化还原响应,荧光超分子金属水凝胶由具有单分子宽度的纳米纤维组成。

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摘要

The integration of a tripeptide derivative, which is a versatile self-assembly motif, with a ruthenium-(Ⅱ)tris(bipyridine) complex affords the first supramolecular metallo-hydrogelator that not only self assembles in water to form a hydrogel but also exhibits gel-sol transition upon oxidation of the metal center. Surprisingly, the incorporation of the metal complex in the hydrogelator results in the nanofibers, formed by the self-assembly of the hydrogelator in water, to have the width of a single molecule of the hydrogelator. These results illustrate that metal complexes, besides being able to impart rich optical, electronic, redox, or magnetic properties to supramolecular hydrogels, also offer a unique geometrical control to prearrange the self-assembly motif prior to self-assembling. The use of metal complexes to modulate the dimensionality of intermolecular interactions may also help elucidate the interactions of the molecular nanofibers with other molecules, thus facilitating the development of supramolecular hydrogel materials for a wide range of applications.
机译:三肽衍生物(一种通用的自组装基序)与钌-(Ⅱ)三(联吡啶)配合物的结合提供了首款超分子金属水凝胶化剂,它不仅可以在水中自组装形成水凝胶,而且还显示出凝胶金属中心氧化时-溶胶转变。出人意料的是,在水凝胶器中掺入金属络合物导致由水凝胶器在水中的自组装形成的纳米纤维具有水凝胶器的单个分子的宽度。这些结果表明,金属配合物除了能够赋予超分子水凝胶丰富的光学,电子,氧化还原或磁性特性外,还提供了独特的几何控制,可以在自组装前预先排列自组装基序。使用金属络合物调节分子间相互作用的维数也可能有助于阐明分子纳米纤维与其他分子的相互作用,从而促进超分子水凝胶材料的广泛应用。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2013年第13期|5008-5011|共4页
  • 作者单位

    Department of Chemistry, Brandeis University, 415 South Street, Waltham, Massachusetts 02454, United States;

    Advanced Nano-fabrication, Imaging and Characterization Core Lab, King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia;

    Department of Chemistry, Brandeis University, 415 South Street, Waltham, Massachusetts 02454, United States;

    Department of Chemistry, Brandeis University, 415 South Street, Waltham, Massachusetts 02454, United States;

    Department of Chemistry, Brandeis University, 415 South Street, Waltham, Massachusetts 02454, United States;

    Advanced Nano-fabrication, Imaging and Characterization Core Lab, King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia;

    Department of Chemistry, Brandeis University, 415 South Street, Waltham, Massachusetts 02454, United States;

  • 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
  • 中图分类
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  • 入库时间 2022-08-18 03:12:31

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