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August 19, 2025Chemistry - A European Journal2 citationsOpen Access

Taming m‐Quionodimethanes by Dispersion Force: Cyclodimerization of (Trialkylsilyl)Ethynyl‐Substituted Indeno2,1‐bFluorenes and Fluoreno2,3‐bFluorenes

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CHCheng-Hao HungHLHan-Chieh LinRORumi Ozawa

Key Points

  • Cyclodimerization of m-QDM derivatives yields varied results based on alkyl group size and sterics, with yields ranging widely.
  • Anti-configuration cyclodimers are achieved, revealing the influence of London dispersion forces in bond formation.
  • Reactions are significantly affected by alkyl group choice, impacting both efficiency and regioselectivity during the process.
  • Insights into dispersion forces lead to better understanding of dimerization efficiency and regioselectivity in these compounds.

Abstract

We present herein a systematic study on the cyclodimerization of (trialkylsilyl)ethynyl-substituted derivatives of indeno2.1-bfluorene and fluoreno2,3-bfluorene, which incorporate an open-shell meta-quinodimethane (m-QDM) unit. Our investigation focuses on the influence of different alkyl groups (methyl, isopropyl, or cyclohexyl) attached to the silyl moiety. Upon generation from the precursor diols via treatment with SnCl2, these m-QDM derivatives yielded cyclodimers with an anti-configuration. The reaction yields varied significantly, ranging from virtually zero to quantitative, depending on the steric bulk of the alkyl group. Furthermore, the regioselectivity of bond formation (Head versus Tail) with respect to the ethynyl-allenyl radical resonance forms was also notably affected by the choice of alkyl group. These remarkable observations are attributed to attractive London dispersion forces operating between the π-system and the alkyl groups. Crucially, the degree of size matching between these components dictates both the dimerization efficiency and the regioselectivity of the bond-forming process.

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Cite This Study

Hung et al. (2025) studied this question.

synapsesocial.com/papers/68af4953ad7bf08b1ead4f69https://doi.org/10.1002/chem.202502053
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