Department of Chemistry and Key Laboratory of Organic Synthesis of Jiangsu Province, Soochow University, Suzhou 215123, People's Republic of China.
Phys Chem Chem Phys. 2013 Mar 21;15(11):4016-23. doi: 10.1039/c3cp44054k.
The complex Et(4)N[Ni(4-pedt)(2)] (1) (4-pedt = 1-(pyridine-4-yl) ethylene-1,2-dithiolate) was synthesized to investigate the behaviour of metal dithiolene compounds upon protonation and oxidation by absorption spectroscopy, electrochemistry and structural analyses and to further understand the electronic states of the dithiolene compounds. It is unexpected that the 915 nm NIR transition band is not shifted when H(+) is added, and it is only affected (blue-shifted) when the compound is oxidized. All the evidence of electronic spectra indicates that the NIR band is relevant to the central [Ni(edt)(2)] moiety (edt = ethylenedithiolate), not the behaviour of individual Ni ions or ligands. It is also not the band of intermolecular interaction of a dimer. The moderately intense band appearing at 655 nm upon protonation is assigned to the intramolecular charge-transfer band between the [Ni(edt)(2)] moiety and the pyridine. The redox potentials of the metal dithiolene are sensitive to the protonation of the pyridyl group. The structures of monocationic complex and the protonated compounds [Ni(4-Hpedt)(2)]·ClO(4)·H(2)O (2) and [Ni(4-Hpedt)(2)]·PhSO(3)·2DMF (3) were characterized by single crystal X-ray determination. The structural data demonstrate that the oxidation of the monoanionic dithiolene complex to neutral does not change the Ni-S bond distances obviously, which further indicates that the process is not only the metal centered oxidation.
合成了复杂的 Et(4)N[Ni(4-pedt)(2)] (1)(4-pedt = 1-(吡啶-4-基)乙烯-1,2-二硫代),以通过吸收光谱、电化学和结构分析研究金属二硫烯化合物在质子化和氧化过程中的行为,并进一步了解二硫烯化合物的电子态。出乎意料的是,当加入 H(+)时,915nm 的近红外跃迁带没有位移,只有在化合物被氧化时才会发生位移(蓝移)。所有电子光谱的证据都表明,近红外带与中心[Ni(edt)(2)]部分(edt = 乙二硫醇)有关,而不是单个 Ni 离子或配体的行为。它也不是二聚体分子间相互作用的带。在质子化时出现的中等强度的 655nm 带被分配给[Ni(edt)(2)]部分和吡啶之间的分子内电荷转移带。金属二硫烯的氧化还原电位对吡啶基的质子化敏感。单核配合物和质子化化合物[Ni(4-Hpedt)(2)]·ClO(4)·H(2)O (2)和[Ni(4-Hpedt)(2)]·PhSO(3)·2DMF (3)的结构通过单晶 X 射线测定得到了表征。结构数据表明,将单阴离子二硫烯配合物氧化为中性不会明显改变 Ni-S 键距离,这进一步表明该过程不仅是金属中心氧化。