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The Role of the Structural Organization of Sulfur-Containing BODIPY Derivative Ultrathin Films in Supramolecular Recognition of Mercury Cations Full article

Journal Colloid Journal
ISSN: 1061-933X , E-ISSN: 1563-1702
Output data Year: 2026, Volume: 88, Number: 4, Pages: 519-529 Pages count : 11 DOI: 10.1134/s1061933x26600417
Authors Berleva A.V. 1 , Ermolaeva A.M. 2 , Volkova Yu.A. 2 , Selektor S.L. 1
Affiliations
1 Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, 119071, Moscow, Russia
2 Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, 119991, Moscow, Russia

Abstract: The paper reports the synthesis of a sulfur-containing amphiphilic derivative, BODIPY B2S, as well as the methods for its purification, and the characteristics of this compound (NMR, IR spectroscopy, mass spectrometry), which can be used as a chelator for mercury(II) cations. The effect of the film structural organization on the efficiency of supramolecular recognition of Hg2+ ions has been determined on the basis of the analysis of the structure, properties, and phase behaviour of B2S in ultrathin films on liquid and solid substrates. The structural changes accompanying molecular transitions in planar systems have been studied using Langmuir monolayer compression isotherms, in situ reflection-absorption UV−Vis spectroscopy, optical absorption spectroscopy, and fluorescence spectroscopy. It has been shown that the disruption of dye associates upon complexation leads to the enhancement of monomer emission and alters the fluorescence colour of Langmuir–Blodgett films formed at a high surface pressure. This phenomenon can serve as a convenient diagnostic indicator of mercury cation binding.
Cite: Berleva A.V. , Ermolaeva A.M. , Volkova Y.A. , Selektor S.L.
The Role of the Structural Organization of Sulfur-Containing BODIPY Derivative Ultrathin Films in Supramolecular Recognition of Mercury Cations
Colloid Journal. 2026. V.88. N4. P.519-529. DOI: 10.1134/s1061933x26600417 WOS Scopus OpenAlex
Dates:
Published online: Aug 14, 2026
Identifiers:
≡ Web of science: WOS:001850339300011
≡ Scopus: 2-s2.0-105047332452
≡ OpenAlex: W7203455938
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