Chem Rev. 2019 Jul 24;119(14):8231-8261. doi: 10.1021/acs.chemrev.8b00561. Epub 2019 Jan 14.
The study of main-group molecules that behave and react similarly to transition-metal (TM) complexes has attracted significant interest in recent decades. Most notably, the attractive idea of replacing the all-too-often rare and costly metals from catalysis has motivated efforts to develop main-group-element-mediated reactions. Main-group elements, however, lack the electronic flexibility of TM complexes that arises from combinations of empty and filled d orbitals and that seem ideally suited to bind and activate many substrates. In this review, we look at boron, an element that despite its nonmetal nature, low atomic weight, and relative redox staticity has achieved great milestones in terms of TM-like reactivity. We show how in interelement cooperative systems, diboron molecules, and hypovalent complexes the fifth element can acquire a truly metallomimetic character. As we discuss, this character is powerfully demonstrated by the reactivity of boron-based molecules with H, CO, alkynes, alkenes and even with N.
近几十年来,研究行为和反应类似于过渡金属(TM)配合物的主族分子引起了极大的兴趣。最值得注意的是,用主族元素取代催化中过于稀缺和昂贵的金属的诱人想法,激发了开发主族元素介导反应的努力。然而,主族元素缺乏 TM 配合物的电子灵活性,这种灵活性来自空轨道和填充 d 轨道的组合,这些轨道似乎非常适合结合和激活许多底物。在这篇综述中,我们研究了硼,尽管它是非金属,原子量低,相对氧化还原静态性,但在 TM 类似反应性方面已经取得了重大里程碑。我们展示了在元素间协同体系、二硼分子和低价配合物中,第五元素如何获得真正的金属模拟特性。正如我们所讨论的,硼基分子与 H、CO、炔烃、烯烃甚至 N 的反应性有力地证明了这种特性。