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February 27, 2026Nano Letters1 citations

Modulation of Semiconductor Quantum Dot Photoluminescence by Photochromic Molecules

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HZHeyou ZhangPDPankaj D. DharpureAAArun Ashokan

Key Points

  • To investigate how photochromic molecules can modify the photoluminescence of semiconductor quantum dots.
  • Synthesis of a hybrid system with semiconductor quantum dots and photochromic molecules.
  • Matching excited-state energies of quantum dots and molecules for a specific chromophore conformation.
  • Immobilization of the system in thin polymer films for solid-state applications.
  • Photoluminescence switching occurs between high-emissive and quenched states in tens of milliseconds.
  • In some cases, switching happens in less than 10 milliseconds.
  • The red-green-blue color space is achievable using three different quantum dots and one type of photochromic molecule.

Abstract

A hybrid system comprising semiconductor quantum dots (QDs) ligated with photochromic molecules has been synthesized and used to study the photomodulation of QD luminescence. The system has been constructed in such a way that the excited-state energies of the QDs and the molecules match but only for one of the conformations of the chromophore, thus enabling phototunable energy transfer from the QD to the ligands. Furthermore, the hybrid system can be immobilized in thin polymer films, creating a solid-state optical switching device. It is demonstrated that the switching of QD photoluminescence between the high-emissive and quenched states occurs on a time scale of tens of milliseconds and in some cases takes even less than 10 ms. The red-green-blue color space can be covered by using three different types of QDs while employing only a single type of photochromic molecule.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69a134dded1d949a99abe46dhttps://doi.org/10.1021/acs.nanolett.5c06282
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