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◆ Science advances2026-09-04

Upconverted nanoparticle for 2D nanomapping of excitation energy transfer in conjugated polymer.

Syoji Ito, Hirotaka Kageyama, Takato Mizoguchi, Bhagya Lakshmi S B, Hikaru Sotome, Ali Eftekhari, Aude Bouchet, Michel Sliwa, Hiroshi Miyasaka

原始摘要(英文原文)· Original abstract
Real-space evaluation of exciton migration in a nanodomain potentially provides substantial information in advanced material design, that is, however, still challenging as optical excitation and detection are diffraction limited to submicrometer resolutions. To explore the real-space evaluation, we used rare-earth core-shell upconverting nanoparticles, with thulium Tm3+ as emitters and Yb3+ as sensitizers (TmUCNP), for nanometric photoexcitation of conducting polymer, poly[2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylenevinylene] (MEH-PPV). The TmUCNPs in MEH-PPV solid were photoexcited with a near-infrared laser. The visible emission of the Tm ions allowed for the production of excited states of MEH-PPV through excitation energy transfer. The emission of MEH-PPV spectrally separable from Tm ions permitted individual imaging of their emission spots and single-particle emission dynamics measurement. The luminescence images of the TmUCNPs and MEH-PPV film, analyzed using the localization method, provided two-dimensional (2D) nanoscale distributions of the emissive sites in MEH-PPV surrounding the TmUCNPs. From the 2D map of the emissive sites, we determined the length of excitation energy transfer in the MEH-PPV solid to be ≦55 nanometers.
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Upconverted nanoparticle for 2D nanomapping of excitation energy transfer in conjugated polymer. — 科研速览 Science Skim