Department of Chemistry and Chemical Engineering, Hunan Institute of Science and Technology, 414006, Yueyang, P. R. China.
Department of Applied Biology and Chemical Technology and Research Institute for Smart Energy, The Hong Kong Polytechnic University Hung Hom, Hong Kong, P. R. China.
Chem Asian J. 2023 Feb 1;18(3):e202201156. doi: 10.1002/asia.202201156. Epub 2022 Dec 29.
A mild and efficient Zn(II)-catalyzed regioselective 1,6-hydroarylation of para-quinone methides (p-QMs) with electron-rich arenes protocol is reported. A variety of electron-rich arenes and para-quinone methides are well tolerated under mild conditions, delivering a broad range of triarylmethanes in good to excellent yields. The present method also works well for the hydroarylation of p-QMs with other nucleophiles, such as aniline, indole and phenol derivatives, offering the corresponding triarylmethanes with good yields under the standard conditions. The possible mechanism for the formation of C(sp )-C(sp ) bonds in hydroarylation reactions has been explored by step-by-step control experiments, and the reaction may follow a second-order manner in a chemical kinetic study.
报道了一种温和高效的 Zn(II)催化的对醌甲醚(p-QMs)与富电子芳环的区域选择性 1,6-氢芳基化反应。在温和条件下,各种富电子芳环和对醌甲醚都能很好地耐受,以良好至优异的收率得到了广泛的三芳基甲烷。该方法也适用于 p-QMs 与其他亲核试剂(如苯胺、吲哚和苯酚衍生物)的氢芳基化反应,在标准条件下以良好的收率得到相应的三芳基甲烷。通过逐步控制实验探索了氢芳基化反应中 C(sp 3 )-C(sp 2 )键形成的可能机理,在化学动力学研究中,反应可能遵循二级反应方式。