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      Endo- and Exo-Functionalized Tetraphenylethylene M12L24 Nanospheres: Fluorescence Emission Inside a Confined Space

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          Abstract

          The intrinsic relationship between the properties of green fluorescent protein (GFP) and its encapsulated small molecular light machine has spurred many biomimicking studies, aiming at revealing the detailed mechanism and further promoting its wide applications in different disciplines. However, how to build a similar confined microenvironment to mimic the cavity of β -barrel and the fluorescence turn-on process is a fundamental challenge for both chemists and biologists. Herein, two distinct exo - and endo -functionalized tetraphenylethylene (TPE)-based M 12 L 24 nanospheres with precise distribution of anchored TPE moieties and unique photophysical properties were constructed by means of a coordination-driven self-assembly strategy. Under dilute conditions, the nanospheres fluoresce stronger than the corresponding TPE subcomponents. Meanwhile, the endo -functionalized sphere is able to induce a higher local concentration and more restrained motion of the enclosed 24 TPE units compared with that of exo -functionalized counterpart and thus induce much stronger emission due to the restriction of the rotation of the pendant TPE units. The biomimetic methodology developed here represents a promising way to understand and construct artificial GFP materials on the platforms of supramolecular coordination complexes.

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          Author and article information

          Journal
          Journal of the American Chemical Society
          J. Am. Chem. Soc.
          American Chemical Society (ACS)
          0002-7863
          1520-5126
          May 24 2019
          May 24 2019
          Article
          10.1021/jacs.9b03885
          6689230
          31125220
          68d4711f-0002-4feb-b0de-c6ed7dbf2904
          © 2019
          History

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