Hua Xin Zhang, Yoichi Sasaki, Masaaki Abe, Yi Zhang, Shen Ye, Masatoshi Osawa
Journal of Organometallic Chemistry 797 29-36 2015年11月 査読有り
© 2015 Elsevier B.V. All rights reserved. Preparation, characterization, and properties of a cyano bridged complex containing the Ru<inf>3</inf>(μ<inf>3</inf>-O) cores, [{Ru<inf>3</inf>(μ<inf>3</inf>-O) (μ-CH<inf>3</inf>COO)<inf>6</inf>(py)<inf>2</inf>}<inf>2</inf>(μ-CN)](PF<inf>6</inf>) ([1]PF<inf>6</inf>) (py = pyridine), are reported and compared with the properties of [{Ru<inf>3</inf>(μ<inf>3</inf>-O)(μ-CH<inf>3</inf>COO)<inf>6</inf>(py)<inf>2</inf>}(μ-CN){Ru<inf>3</inf>(μ<inf>3</inf>-O)(μ-CH<inf>3</inf>COO)<inf>6</inf>(py)(CO)}] (2). The cyclic voltammogram of [1]<sup>+</sup> in 0.1 M (n-Bu)<inf>4</inf>NPF<inf>6</inf>-CH<inf>2</inf>Cl<inf>2</inf> solution with an Ag/AgCl reference electrode showed a series of redox waves assigned to the processes Ru<inf>3</inf><sup>II,II,III</sup>/Ru<inf>3</inf><sup>II,III,III</sup> (-1.70 V, -1.52 V), Ru<inf>3</inf><sup>II,III,III</sup>/Ru<inf>3</inf><sup>III,III,III</sup> (-0.37 V, -0.19 V), Ru<inf>3</inf><sup>III,III,III</sup>/Ru<inf>3</inf><sup>III,III,IV</sup> (+1.08 V), and Ru<inf>3</inf><sup>III,III,IV</sup>/Ru<inf>3</inf><sup>III,IV,IV</sup> (+2.03 V). Upon bridge formation the redox waves of the C-bonded Ru<inf>3</inf> moiety of [1]<sup>+</sup> stay at the similar potential region to those of Ru<inf>3</inf>(μ<inf>3</inf>-O)(μ-CH<inf>3</inf>COO)<inf>6</inf>(py)<inf>2</inf>(CN) (3) with a unidentate CN<sup>-</sup>, so that the enhancement of the π-back donation does not operate, indicating that the Ru<inf>3</inf>O core is not a good π-donor. Complex 2 showed five redox waves for the processes Ru<inf>3</inf><sup>II,II,III</sup>/Ru<inf>3</inf><sup>II,III,III</sup> (-1.15 V), Ru<inf>3</inf><sup>II,III,III</sup>/Ru<inf>3</inf><sup>III,III,III</sup> (-0.21 V, +0.55 V), and Ru<inf>3</inf><sup>III,III,III</sup>/Ru<inf>3</inf><sup>III,III,IV</sup> (+1.05 V, +1.35 V). The redox potential (-1.15 V) of the Ru<inf>3</inf><sup>II,II,III</sup>/Ru<inf>3</inf><sup>II,III,III</sup> process of the Ru<inf>3</inf>(py) (CO) unit in 2 showed a negative shift in comparison to that (-0.84 V) of [Ru<inf>3</inf><sup>II,III,III</sup>(μ<inf>3</inf>-O) (μ-CH<inf>3</inf>COO)<inf>6</inf>(py)<inf>2</inf>(CO)]. The infrared spectroelectrochemistry of [1]<sup>+</sup> and 2 in 0.1 M n-Bu<inf>4</inf>NPF<inf>6</inf>-CH<inf>2</inf>Cl<inf>2</inf> solutions revealed that the frequencies of the stretching vibration ν(CN) of the cyanide increased with the increase in the isovalent oxidation states of [1]<sup>+</sup> but those in the Ru<inf>3</inf>O-based mixed-valence states, Ru<inf>3</inf><sup>II,III,III</sup>-Ru<inf>3</inf><sup>III,III,III</sup>, and Ru<inf>3</inf><sup>III,III,III</sup>-Ru<inf>3</inf><sup>III,III,IV</sup>, were significantly smaller, which was possibly due to the effective electronic coupling through the CN<sup>-</sup> bridge between the two Ru<inf>3</inf> units with different oxidation states. In contrast, such coupling was not observed for 2 that has two Ru<inf>3</inf> units with significantly different ligand environment.