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Multicomponent synthesis of stereogenic-at-boron fluorophores (BOSPYR) from boronic acids, salicylaldehydes, and 2-formylpyrrole hydrazones. | LitMetric

AI Article Synopsis

  • - This study presents a straightforward method for synthesizing a new class of fluorescent dyes called stereogenic-at-boron fluorochromes (BOSPYR) using common chemicals, which absorb and emit light in the visible spectrum and have significant Stokes shifts.
  • - The fluorescence of the BOSPYR dyes is weak but improves significantly when placed in thicker media, with a notable 21-fold enhancement observed for one compound, 1a.
  • - The molecular structure of 1a shows non-planarity, which contributes to its chiral properties, and advanced computational techniques reveal that the dye's emission comes from a locally-excited state, suggesting potential for unique optical applications.

Article Abstract

This work describes one-step syntheses of various stereogenic-at-boron fluorochromes (BOSPYR) multicomponent reactions involving readily accessible boronic acids, salicylaldehydes, and 2-formylpyrrole hydrazones. The dyes absorb and emit in the visible region of the electromagnetic radiation, and are characterized by large Stokes shifts (2850-4930 cm) with weak fluorescence emissions (: 1.5-9.1%). Notably, the dimmed fluorescence of BOSPYRs recovers upon transition to viscous media (21-fold for 1a). The representative compound 1a exhibits clear Cotton effects with dissymmetry factors of . || ∼ 1.9 × 10 in the visible region, indicating efficient asymmetry induction to the chromophore. The X-ray molecular structure of 1a shows that the chromophore deviates from planarity by 17.2°, which may contribute significantly to the inherent chirality of the fluorophore. A computational examination of excited states by time-dependent density functional theory (TD-DFT) identifies the emission mechanism as arising from a locally-excited (LE) state.

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Source
http://dx.doi.org/10.1039/d4cc03956dDOI Listing

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