School of Chemistry, University of Hyderabad, P.O. Central University, Hyderabad 500046, India.
Inorg Chem. 2013 Jan 7;52(1):66-76. doi: 10.1021/ic301017g. Epub 2012 Dec 10.
We describe the synthesis, crystal structures, electronic absorption spectra, and electrochemistry of a series of square-planar nickel-bis(quinoxaline-6,7-dithiolate) complexes with the general formula Bu(4)N[Ni(X(2)6,7-qdt)(2)], where X = H (1a), Ph (2a), Cl (3), and Me (4). The solution and solid-state electronic absorption spectral behavior and electrochemical properties of these compounds are strongly dependent on the electron donating/accepting nature of the substituent X, attached to the quinoxaline-6,7-dithiolate ring in the system Bu(4)N[Ni(X(2)6,7-qdt)(2)]. Particularly, the charge transfer (CT) transition bands observed in the visible region are greatly affected by the electronic nature of the substituent. A possible explanation for this influence of the substituents on electronic absorption and electrochemistry is described based on highest occupied molecular orbital (HOMO) to lowest unoccupied molecular orbital (LUMO) gaps, which is further supported by ground-state electronic structure calculations. In addition to this, the observed CT bands in all the complexes are sensitive to the solvent polarity. Interestingly, compounds 1a, 2a, 3, and 4 undergo reversible oxidation at very low oxidation potentials appearing at E(1/2) = +0.12 V, 0.033 V, 0.18 V, and 0.044 V vs Ag/AgCl, respectively, in MeOH solutions, corresponding to the respective couples Ni(X(2)6,7-qdt)(2)/Ni(X(2)6,7-qdt)(2). Compounds 1a, 3, and 4 have been characterized unambiguously by single crystal X-ray structural analysis; compound 2a could not be characterized by single crystal X-ray structure determination because of the poor quality of the concerned crystals. Thus, we have synthesized the tetraphenyl phosphonium salt of the complex anion of 2a, PPh(4)[Ni(Ph(2)6,7-qdt)(2)]·3DMF (2b) for its structural characterization.
我们描述了一系列具有通式Bu(4)N[Ni(X(2)6,7-qdt)(2)]的正方形平面镍-双(喹喔啉-6,7-二硫代)配合物的合成、晶体结构、电子吸收光谱和电化学性质,其中 X = H(1a)、Ph(2a)、Cl(3)和 Me(4)。这些化合物的溶液和固态电子吸收光谱行为和电化学性质强烈依赖于取代基 X 的供电子/受电子性质,该取代基附着在系统Bu(4)N[Ni(X(2)6,7-qdt)(2)]中的喹喔啉-6,7-二硫代环上。特别是,在可见区域观察到的电荷转移 (CT) 跃迁带受到取代基电子性质的极大影响。根据最高占据分子轨道 (HOMO) 到最低未占据分子轨道 (LUMO) 间隙,对这种取代基对电子吸收和电化学的影响进行了可能的解释,这进一步得到了基态电子结构计算的支持。除此之外,所有配合物中的观察到的 CT 带对溶剂极性敏感。有趣的是,化合物 1a、2a、3 和 4 在非常低的氧化电位下发生可逆氧化,出现在 E(1/2) = +0.12 V、0.033 V、0.18 V 和 0.044 V 相对于 MeOH 溶液中的 Ag/AgCl,分别对应于各自的配合物Ni(X(2)6,7-qdt)(2)/Ni(X(2)6,7-qdt)(2)。化合物 1a、3 和 4 通过单晶 X 射线结构分析得到了明确的表征;由于相关晶体质量差,化合物 2a 无法通过单晶 X 射线结构确定来进行表征。因此,我们合成了配合物阴离子的四苯膦盐PPh(4)[Ni(Ph(2)6,7-qdt)(2)]·3DMF(2b)以进行其结构表征。