MALTA-Consolider Team and Departamento de Química Física, Facultad de Ciencias Químicas, Universidad Complutense de Madrid, E-28040 Madrid, Spain.
Departamento de Química Inorgánica, Facultad de Ciencias Químicas, Universidad Complutense de Madrid, E-28040 Madrid, Spain.
Dalton Trans. 2022 Jun 27;51(25):9708-9719. doi: 10.1039/d2dt00909a.
The complete series of [RuCl(D-FPhF)(OCCH)] ( = 1-4; D-FPhF = ,'-bis(4-fluorophenyl)formamidinate) compounds, has been prepared and characterized by a multi-technique approach, including single crystal X-ray diffraction. A careful study of the different methodologies has allowed us to prepare four compounds with good yields and without an inert atmosphere or further purification. Specifically, [RuCl(D-FPhF)(OCCH)] (1) was obtained using an ultrasound-assisted (USS) method, while [RuCl(D-FPhF)] (4) was prepared by microwave assisted solvothermal synthesis (MWS). The intermediate substitution products -[RuCl(D-FPhF)(OCCH)] (2) and [RuCl(D-FPhF)(OCCH)] (3) have been prepared by conventional heating, controlling the molar ratio of the starting materials. ESI-MS and infrared spectroscopy were used to follow all the reactions and permitted a qualitative evaluation of the axial reactivity in this series. Magnetic and absorption measurements confirmed a high spin electronic configuration in all cases. However, the effect of the gradual modification of the electronic density in the diruthenium core markedly affects other properties. The cyclic voltammograms of the compounds show a strong decrease in the one electron oxidation potential and an increase in the reduction potential in the series from 1 to 4. Furthermore, despite their paramagnetic nature, H- and F-NMR spectra were recorded, and a correlation between the paramagnetic shift of the signals and the substitution degree of the diruthenium species was observed. These results provide a comprehensive guide to synthesise and understand the effects of equatorial ligand substitution on the properties of Ru compounds.
[RuCl(D-FPhF)(OCCH)](= 1-4;D-FPhF =,'-二(4-氟苯基)甲脒基)系列化合物已通过多种技术手段(包括单晶 X 射线衍射)进行了制备和表征。对不同方法的仔细研究使我们能够以良好的收率制备四种化合物,而无需惰性气氛或进一步纯化。具体而言,[RuCl(D-FPhF)(OCCH)](1)是通过超声辅助(USS)方法获得的,而[RuCl(D-FPhF)](4)是通过微波辅助溶剂热合成(MWS)制备的。中间取代产物-[RuCl(D-FPhF)(OCCH)](2)和[RuCl(D-FPhF)(OCCH)](3)是通过常规加热、控制起始原料的摩尔比来制备的。ESI-MS 和红外光谱用于跟踪所有反应,并对该系列中轴向反应性进行了定性评估。磁和吸收测量证实了所有情况下的高自旋 d 电子构型。然而,在双核钌核中电子密度的逐渐修饰对其他性质有显著影响。化合物的循环伏安图显示出单电子氧化电位的强烈降低和从 1 到 4 的还原电位的增加。此外,尽管它们具有顺磁性,但仍记录了 H-和 F-NMR 光谱,并观察到信号的顺磁位移与双核钌物种的取代程度之间的相关性。这些结果为合成和理解轴向配体取代对 Ru 化合物性质的影响提供了全面的指导。