Valdés Hugo, Germán-Acacio Juan M, van Koten Gerard, Morales-Morales David
Institut de Química Computacional i Catàlisi (IQCC) and Departament de Química, Universitat de Girona, Campus de Montilivi, Girona E-17003, Catalonia, Spain.
Red de Apoyo a la Investigación, Coordinación de la Investigación Científica-UNAM, Instituto Nacional de Ciencias Médicas y Nutrición SZ, C. P.14000, Ciudad de México, Mexico.
Dalton Trans. 2022 Feb 1;51(5):1724-1744. doi: 10.1039/d1dt03870b.
This perspective is to illustrate the synthesis and applications of bimetallic complexes by merging a metallocene and a (cyclopentadienyl/aryl) pincer metal complex. Four possible ways to merge metallocene and pincer-metal motifs are reported and representative examples are discussed in more detail. These bimetallic complexes have been employed in some important catalytic reactions such as cross-coupling, transfer hydrogenation or synthesis of ammonia. The metallocene fragment may tune the electronic properties of the pincer ligand, due to its redox reversible properties. Also, the presence of two metals in a single complex allows their electronic communication, which proved beneficial for, , the catalytic activity of some species. The presence of the metallocene fragment provides an excellent opportunity to develop chiral catalysts, because the metallocene merger generally renders the two faces of the pincer-metal catalytic site diastereotopic. Besides, an extra chiral functionality may be added to the bimetallic species by using pincer motifs that are planar chiral, by using the different substituents of pincer ligand "arms" or non-symmetrical arene groupings. Post-functionalization of pre-formed pincer-metal complexes, η-coordination with an areneophile such as [CpRu] and [Cp*Ru] presents a striking strategy to obtain diastereomeric metallocene-pincer type derivatives, that actually involve half-sandwich metallocenes. This approach offers the possibility to create diastereomerically pure derivatives by using the chiral TRISPHAT anion. The authors hope that this report of the synthetic, physico-chemical properties and remarkable catalytic activities of metallocene-based pincer-metal complexes will inspire other researchers to continue exploring this realm.
本文旨在通过将茂金属与(环戊二烯基/芳基)钳形金属配合物结合,阐述双金属配合物的合成与应用。报道了四种将茂金属与钳形金属结构结合的可能方式,并更详细地讨论了代表性实例。这些双金属配合物已被用于一些重要的催化反应,如交叉偶联、转移氢化或氨合成。由于茂金属片段具有氧化还原可逆性,它可以调节钳形配体的电子性质。此外,单个配合物中两种金属的存在允许它们进行电子通讯,这对某些物种的催化活性被证明是有益的。茂金属片段的存在为开发手性催化剂提供了绝佳机会,因为茂金属的合并通常使钳形金属催化位点的两个面成为非对映异位的。此外,通过使用平面手性的钳形结构、钳形配体“臂”的不同取代基或不对称芳烃基团,可以向双金属物种中添加额外的手性功能。预先形成的钳形金属配合物的后官能化,与诸如[CpRu]和[Cp*Ru]等亲芳烃的η配位,是获得实际上涉及半夹心茂金属的非对映异构茂金属-钳形类型衍生物的显著策略。这种方法提供了使用手性TRISPHAT阴离子创建非对映体纯衍生物的可能性。作者希望这份关于基于茂金属的钳形金属配合物的合成、物理化学性质和显著催化活性的报告,将激励其他研究人员继续探索这一领域。