Aix Marseille Univ, CNRS, Centrale Marseille, iSm2, Marseille, France.
Chem Soc Rev. 2023 Jul 3;52(13):4381-4391. doi: 10.1039/d3cs00163f.
Four-coordinate organoboron derivatives present interesting chemical, physical, biological, electronical, and optical properties. Given the increasing demand for the synthesis of smart functional materials based on chiral organoboron compounds, the exploration of stereoselective synthesis of boron-stereogenic organo-derivatives is highly desirable. However, the stereoselective construction of organoboron compounds stereogenic at boron has been far less studied than other elements of the main group due to configurational stability concerns. Nowadays, these species are no longer elusive and configurationally stable compounds have been highlighted. The idea is to show the potential of the stereoselective building of the four-coordinate boron centre and encourage future endeavors and developments in the field.
四配位有机硼衍生物具有有趣的化学、物理、生物、电子和光学性质。鉴于对手性有机硼化合物为基础的智能功能材料的合成需求不断增加,对硼手性有机衍生物的立体选择性合成的探索是非常可取的。然而,由于构型稳定性的考虑,硼手性有机硼化合物的立体选择性构建远不如主族其他元素研究得多。如今,这些物种不再难以捉摸,并且已经突出了构型稳定的化合物。其目的是展示四配位硼中心的立体选择性构建的潜力,并鼓励该领域未来的努力和发展。