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February 8, 2026Methods and Applications in Fluorescence0 citationsOpen Access

Four-membered N-heterocyclic carbenes in carbene metal amide emitters: A quantum chemical view

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JGJasper GuhlTCTu Viet ChuTKTobias Kretschmer

Key Points

  • This study aims to investigate the TADF properties of four-membered N-heterocyclic carbenes compared to broader classes of carbene metal amides.
  • Utilized advanced quantum chemical methods to analyze four-membered N-heterocyclic carbenes.
  • Scanned a set of carbenes with bulky substituents for formation abilities of carbene metal amides.
  • Compared properties to five- and six-membered carbene analogs.
  • Examined the effects of ligand alignment on TADF performance.
  • Investigated excited-state behavior in different environments (liquid vs. solid).
  • Four-membered carbenes displayed improved transition dipole moments in excited states.
  • Optimized geometry in solid states predicted enhanced TADF efficiency.
  • 4LAC–Ag(I)–Cz showed superior rISC rate constants (10^9 to 10^10 s−1).
  • Fluorescence rate constants were around 10^7 s−1, indicating competitive advantages over triplet deactivation.
  • TADF properties were impacted by the perpendicular alignment of ligands in solid-state conditions.

Abstract

Abstract Using computational chemistry, we have scanned a set of four-membered N-heterocyclic carbenes with bulky substituents for their ability to form carbene metal amides (CMAs) with excellent thermally activated delayed fluorescence (TADF) properties. In comparison to the properties of their well-known five- and six-membered analogs, the transition dipole moments of the first excited singlet states of the corresponding Cu (I) carbazolide (Cz) complexes increase. For CMAs of the most promising four-membered carbene, alactam-based carbene (4LAC), detailed investigations of the TADF properties have been performed using advanced quantum chemical methods. Due to the small energy separation between its singlet and triplet ligand-to-ligand charge-transfer (LLCT) states,4LAC–Ag (I) –Cz exhibits the best ratio between reverse intersystem crossing (rISC) and intersystem crossing in the coinage metal triad for a coplanar orientation of the ligands. The TADF properties of the corresponding Cu (I) and Au (I) complexes benefit from twisted ligand–ligand alignments, achieved by using tetrafluorocarbazolide (4FCz) as donor ligand. The moderate reduction of the fluorescence rate constant upon twisting by about 45-50° is overcompensated by a decrease of the singlet–triplet energy gap, thus improving the TADF performance. Overall, with fluorescence rate constants of the order of 10 7 s −1 and rISC rate constants between 10 9 and 10 10 s −1 , TADF should have competitive advantageover common triplet deactivation processes such as triplet–triplet annihilation. Like in other CMAs, full excited-state geometry relaxation in liquid solution is detrimental for the emission properties. In the solid state, where the formation of a perpendicular ligand–ligand alignment is sterically hindered by the environment, 4LAC–M–Cz and 4LAC–M–4FCz are predicted to be efficient TADF compounds with red to orange emission.

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Cite This Study

Guhl et al. (2026) studied this question.

synapsesocial.com/papers/6988277b0fc35cd7a8846498https://doi.org/10.1088/2050-6120/ae428d
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