Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
Inorg Chem. 2010 Jul 19;49(14):6535-44. doi: 10.1021/ic100362q.
The electronic structures of a series of high-spin Ni(II)-thiolate complexes of the form [PhTt(tBu)]Ni(SR) (R = CPh(3), 2; C(6)F(5), 3; C(6)H(5), 4; PhTt(tBu) = phenyltris((tert-butylthio)methyl)borate) have been characterized using a combined spectroscopic and computational approach. Resonance Raman (rR) spectroscopic data reveal that the nu(Ni-SR) vibrational feature occurs between 404 and 436 cm(-1) in these species. The corresponding rR excitation profiles display a striking de-enhancement behavior because of interference effects involving energetically proximate electronic excited states. These data were analyzed in the framework of time-dependent Heller theory to obtain quantitative insight into excited state nuclear distortions. The electronic absorption and magnetic circular dichroism spectra of 2-4 are characterized by numerous charge transfer (CT) transitions. The dominant absorption feature, which occurs at approximately 18,000 cm(-1) in all three complexes, is assigned as a thiolate-to-Ni CT transition involving molecular orbitals that are of pi-symmetry with respect to the Ni-S bond, reminiscent of the characteristic absorption feature of blue copper proteins. Density functional theory computational data provide molecular orbital descriptions for 2-4 and allow for detailed assignments of the key spectral features. A comparison of the results obtained in this study to those reported for similar Ni-thiolate species reveals that the supporting ligand plays a secondary role in determining the spectroscopic properties, as the electronic structure is primarily determined by the metal-thiolate bonding interaction.
一系列形式为 [PhTt(tBu)]Ni(SR)(R = CPh(3), 2;C(6)F(5), 3;C(6)H(5), 4;PhTt(tBu) = 苯基三((叔丁基硫基)甲基)硼酸盐)的高自旋 Ni(II)-硫醇配合物的电子结构已通过光谱和计算相结合的方法进行了表征。共振拉曼(rR)光谱数据表明,这些物种中 ν(Ni-SR)振动特征出现在 404 到 436 cm(-1)之间。相应的 rR 激发轮廓显示出惊人的去增强行为,这是由于涉及能量相近的电子激发态的干涉效应。这些数据是在含时 Heller 理论的框架内进行分析的,以获得对激发态核畸变的定量见解。2-4 的电子吸收和磁圆二色光谱具有许多电荷转移(CT)跃迁。在所有三个配合物中,大约在 18000 cm(-1)处发生的主要吸收特征被分配为涉及相对于 Ni-S 键具有 pi 对称性的分子轨道的硫醇到 Ni CT 跃迁,类似于蓝铜蛋白的特征吸收特征。密度泛函理论计算数据为 2-4 提供了分子轨道描述,并允许对关键光谱特征进行详细分配。将本研究中获得的结果与类似的 Ni-硫醇物种的报道结果进行比较表明,支撑配体在确定光谱性质方面起着次要作用,因为电子结构主要由金属-硫醇键合相互作用决定。