The classical synthesis of quinoids, which involves Takahashi coupling and subsequent oxidation, often gives only low to medium yields. Herein, we disclose the keto-enol-tautomerism-assisted spontaneous air oxidation of the coupling products to quinoids. This allows for the synthesis of various indandione-terminated quinoids in high isolated yields (85-95%). The origin of the high yield and the mechanism of the spontaneous air oxidation were ascertained by experiments and theoretical calculations. All the quinoidal compounds displayed unipolar n-type transport behavior, and single crystal field-effect transistors based on the micro-wires of a representative quinoid delivered an electron mobility of up to 0.53 cm2V−1s−1, showing the potential of this type of quinoid as an organic semiconductor.
CITATION STYLE
Wang, C., Du, T., Deng, Y., Yao, J., Li, R., Zhao, X., … Geng, Y. (2021). High-yield and sustainable synthesis of quinoidal compounds assisted by keto-enol tautomerism. Chemical Science, 12(27), 9366–9371. https://doi.org/10.1039/d1sc01685g
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