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February 2, 2026Chinese Journal of Chemistry1 citationsOpen Access

Engineering Air‐Stable, Near‐Infrared Luminescent Trityl Radicals with One Phenothiazine Ring

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KGKuang GuZLZenghui LiYWYì Wáng

Key Points

  • This research aims to develop air-stable luminescent trityl radicals by incorporating a phenothiazine ring.
  • Synthesized six new PTZ-BTM radicals by substituting a polychloroaryl group with a phenothiazine unit.
  • Conducted single-crystal structural analysis to determine molecular configuration.
  • Applied density functional theory (DFT) calculations to analyze electronic properties.
  • Performed cyclic voltammetry to assess redox behavior.
  • PTZ-BTM radicals displayed significantly longer half-lives (18.9–219.4 h) than classical TTM (0.6 h).
  • Demonstrated distinct near-infrared emissions at 784 nm and 783 nm with respective PLQY of 1.2% and 1.5%.
  • Revealed two reversible redox events, indicating the radicals' potential for electron transfer applications.

Abstract

Comprehensive Summary Air‐stable organic radicals with their open‐shell electronic configuration possess attractive optoelectronic properties and hold great potential for a wide array of applications. Among luminescent radicals, polychlorinated triarylmethyl ( PTM ) radicals and their derivatives are the most extensively studied due to the protection provided by the polychloroaryl groups. In this study, a phenothiazine unit was employed to substitute one polychloroaryl group in PTM radicals, yielding six new PTZ‐BTM ( 1a – 3a , and 1b – 3b ) radicals. Single‐crystal structural analysis revealed that PTZ‐BTM radicals adopt a propeller‐like configuration, which effectively shields the central carbon radical and contributes to their remarkable stability under air conditions. Their half‐lives (18.9–219.4 h) are much longer than that (0.6 h) of classical tri(2,4,6‐trichlorophenyl)methyl radical ( TTM ). Density functional theory (DFT) calculations indicate that approximately 65% of the spin density is localized on the central carbon of PTZ‐BTM radicals. HOMO is predominantly situated on the phenothiazine moiety, and LUMO is mainly distributed over the polychlorophenyl unit. Thus, 3a and 3b displayed distinct near‐infrared emission at 784 nm and 783 nm, showing a substantial bathochromic shift compared to that (570 nm) of TTM , along with a photoluminescence quantum yield (PLQY) of 1.2% and 1.5% in dichloromethane. Furthermore, cyclic voltammetry revealed that the PTZ‐BTM radicals exhibit two reversible redox events, demonstrating their ability to be reversibly reduced to anions and oxidized to cations. This work presents a new type of air‐stable, luminescent radicals, implying potential applications in the fields of OLED and NIR‐I imaging.

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Cite This Study

Gu et al. (2026) studied this question.

synapsesocial.com/papers/6980fc73c1c9540dea80e373https://doi.org/10.1002/cjoc.70470
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