Institut für Anorganische Chemie and Institute for Sustainable Chemistry, & Catalysis with Boron, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.
Chemistry. 2021 Apr 26;27(24):7043-7058. doi: 10.1002/chem.202005302. Epub 2021 Mar 1.
In recent years, research in the fields of optoelectronics, anion sensors and bioimaging agents have been greatly influenced by novel compounds containing triarylborane motifs. Such compounds possess an empty p-orbital at boron which results in useful optical and electronic properties. Such a diversity of applications was not expected when the first triarylborane was reported in 1885. Synthetic approaches to triarylboranes underwent various changes over the following century, some of which are still used in the present day, such as the generally applicable routes developed by Krause et al. in 1922, or by Grisdale et al. in 1972 at Eastman Kodak. Some other developments were not pursued further after their initial reports, such as the synthesis of two triarylboranes bearing three different aromatic groups by Mikhailov et al. in 1958. This review summarizes the development of synthetic approaches to triarylboranes from their first report nearly 135 years ago to the present.
近年来,光电、阴离子传感器和生物成像试剂领域的研究受到了含三芳基硼基结构的新型化合物的极大影响。这些化合物在硼原子上有空的 p 轨道,从而具有有用的光学和电子性质。当 1885 年首次报道第一个三芳基硼时,并没有预料到会有如此多样化的应用。在接下来的一个世纪里,三芳基硼的合成方法经历了各种变化,其中一些至今仍在使用,例如 Krause 等人在 1922 年或 Grisdale 等人在 1972 年在柯达公司开发的一般适用路线。其他一些发展在最初报道后并没有进一步推进,例如 Mikhailov 等人在 1958 年合成的带有三个不同芳香基团的两个三芳基硼。这篇综述总结了近 135 年前首次报道以来三芳基硼合成方法的发展。