Department of Inorganic, Organic Chemistry and Biochemistry, Faculty of Science and Chemical Technologies, University of Castilla-La Mancha-IRICA, 13071 Ciudad Real, Spain.
Department of Physical Chemistry, Faculty of Sciences, University of Málaga, Campus of Teatinos s/n, 29071 Malaga, Spain.
Molecules. 2022 Jul 6;27(14):4340. doi: 10.3390/molecules27144340.
In this work, as an equivocal proof of the potential of microwave irradiation in organic synthesis, a complex pyrazine-decorated benzotriazole derivative that is challenging to prepare under conventional conditions has been obtained upon microwave irradiation, thus efficiently improving the process and yields, dramatically decreasing the reaction times and resulting in an environmentally friendly synthetic procedure. In addition, this useful derivative could be applied in organic electronics, specifically in organic field-effect transistors (OFETs), exhibiting the highest electron mobilities reported to date for benzotriazole discrete molecules, of around 10 cmVs.
在这项工作中,微波辐射在有机合成中的潜力得到了充分证明。在微波辐射的条件下,得到了一个复杂的吡嗪修饰的苯并三唑衍生物,该化合物在常规条件下难以制备,从而有效地提高了反应的收率和产率,显著缩短了反应时间,并实现了环境友好的合成过程。此外,这个有用的衍生物可以应用于有机电子学,特别是在有机场效应晶体管(OFETs)中,表现出迄今为止报道的苯并三唑离散分子中最高的电子迁移率,约为 10 cmVs。