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Real-Space Investigation of Energy Transfer through Electron Tomography

  • Yohei Ishida
  • , Ikumi Akita
  • , Thomas Pons
  • , Tetsu Yonezawa
  • , Niko Hildebrandt

研究成果: ジャーナルへの寄稿学術誌査読

抄録

We herein report the first real-space investigation of Förster resonance energy transfer (FRET) in two different types of quantum dot (QD) supramolecular assemblies by observing their three-dimensional (3D) configurations through high-resolution electron tomography. Owing to its critical role in photosynthesis, artificial light-harvesting antennas, and investigation of protein-protein interactions, the mechanism of FRET has been intensively studied by monitoring its excited-state dynamics via various spectroscopic techniques. The utilized electron tomography technique allowed the direct localization of 3D coordinates of individual QDs in self-assembled nanostructures and theoretical estimation of the FRET efficiency of a single fluorophore, domain, or supramolecular assembly. Moreover, the experimental value of the FRET efficiency determined by fluorescence spectroscopy was in good agreement with the magnitude obtained via electron tomography. We believe that the described strategy can be used in single-molecule FRET studies and will help to create a new bridge between material science and molecular/supramolecular photochemistry.

本文言語英語
ページ(範囲)28395-28402
ページ数8
ジャーナルJournal of Physical Chemistry C
121
51
DOI
出版ステータス出版済み - 12月 28 2017
外部発表はい

!!!All Science Journal Classification (ASJC) codes

  • 電子材料、光学材料、および磁性材料
  • エネルギー一般
  • 物理化学および理論化学
  • 表面、皮膜および薄膜

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