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JOURNALS // Optics and Spectroscopy // Archive

Optics and Spectroscopy, 2022 Volume 130, Issue 3, Pages 433–447 (Mi os1695)

Nanophotonics

Photocontrolled reversible changes in the electronic and vibrational spectra of photochromic diarylethene in various nanostructured systems

G. T. Vasilyuka, P. V. Karpacha, S. D. Gogolevaa, A. O. Aytb, V. A. Barachevskiĭb, S. A. Maskevichc

a Yanka Kupala State University of Grodno, 230023 Grodno, Belarus
b Photochemistry Center, Russian Academy of Sciences, 119421 Moscow, Russia
c Belorussian State University, International Sakharov Environmental Institute BSU, 220070 Minsk, Belarus

Abstract: An analysis of the results of complex experimental and theoretical studies of photoinduced changes in the spectral properties of photochromic diarylethene in various nanostructured systems is presented. The properties of diarylethene were studied in solutions in the presence of colloidal metal and semiconductor nanoparticles, as well as in the form of solid-phase composite nanostructured core-shell systems based on colloidal nanoparticles with a shell of diarylethene molecules (including in a polymer matrix). A photoinduced reversible change in the electronic and vibrational spectra of diarylethene in various studied matrices was found. The results can be used to create optoelectronic photo-switchable elements for ultra-high-capacity memory devices, photo-controlled molecular switches and sensors.

Keywords: photochromism, diarylethenes, nanocomposites, quantum dots, electronic spectra, vibrational spectra, fluorescence, Ferster resonance energy transfer, quantum chemical calculations.

Received: 10.12.2021
Revised: 20.12.2021
Accepted: 22.12.2021

DOI: 10.21883/OS.2022.03.52175.3023-21



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