Hassenrück Christopher, Winter Rainer F
University of Konstanz , Universitätsstraße 10, D-78457 Konstanz, Germany.
Inorg Chem. 2017 Nov 6;56(21):13517-13529. doi: 10.1021/acs.inorgchem.7b02186.
Triarylamine-vinylruthenium conjugates (4-RCH)N{CH-4-CH═CHRu(CO)Cl(PPr)}, with R = CHO (1-CHO), C(═O)Me (1-Ac), COOMe (1-E), and Me (1-Me), have been prepared and investigated in their neutral, mono- and dioxidized states by cyclic voltammetry, IR, and UV/vis/near-infrared spectroelectrochemistry, electron paramagnetic resonance spectroscopy, and quantum-chemical calculations. Electron-withdrawing substituents at the triarylamine moiety shift the charge and spin density toward the more electron-rich vinylruthenium site in comparison to the 4-OMe-substituted triarylamine-vinylruthenium conjugate 1-OMe. A more asymmetric charge distribution changes the intense vibrationally structured intervalence charge-transfer (IVCT) band of completely delocalized, mixed-valent (MV) 1-OMe to a weaker, highly asymmetric, nonsolvatochromic band with significantly smaller bandwidth at the low-energy side. The temperature dependence of the IVCT band of the formyl derivative 1-CHO proves that vibrational coupling of the IVCT transition to a symmetrical vibration is the underlying reason for band skewing. All of our results indicate that the MV radical cations remain electronically strongly coupled despite an increasingly stronger bias of the highest occupied molecular orbital to the vinylruthenium entity. Moreover, the dications of these complexes were found to be paramagnetic, which makes them rare examples of compounds that combine strong electronic coupling in the cationic MV state with paramagnetism of the dications.
已制备了三芳基胺 - 乙烯基钌共轭物(4 - RCH)N{CH - 4 - CH═CHRu(CO)Cl(PPr)},其中R = CHO (1 - CHO)、C(═O)Me (1 - Ac)、COOMe (1 - E)和Me (1 - Me),并通过循环伏安法、红外光谱、紫外/可见/近红外光谱电化学、电子顺磁共振光谱和量子化学计算对其处于中性、单氧化态和双氧化态的情况进行了研究。与4 - OMe取代的三芳基胺 - 乙烯基钌共轭物1 - OMe相比,三芳基胺部分的吸电子取代基使电荷和自旋密度向电子更丰富的乙烯基钌位点转移。更不对称的电荷分布将完全离域的混合价态(MV) 1 - OMe的强烈振动结构的价间电荷转移(IVCT)带转变为较弱、高度不对称、非溶剂化显色的带,在低能量侧带宽明显更小。甲酰基衍生物1 - CHO的IVCT带的温度依赖性证明,IVCT跃迁与对称振动的振动耦合是带偏斜的根本原因。我们所有的结果表明,尽管最高占据分子轨道对乙烯基钌实体的偏向越来越强,但MV自由基阳离子在电子上仍保持强烈耦合。此外,发现这些配合物的双阳离子是顺磁性的,这使它们成为在阳离子MV状态下具有强电子耦合和双阳离子顺磁性相结合的罕见化合物实例。