Sil Debangsu, Tuglak Khan Firoz Shah, Rath Sankar Prasad
Department of Chemistry, Indian Institute of Technology Kanpur , Kanpur-208016, India.
Inorg Chem. 2014 Nov 17;53(22):11925-36. doi: 10.1021/ic5011677. Epub 2014 Nov 6.
The binding of a series of substituted thiophenols as axial ligands on a highly flexible ethane-bridged diiron(III)bisporphyrin framework has been investigated as a model of diheme proteins. Spectroscopic characterization reveals a high-spin (S = 5/2) state of iron for all of the pentacoordinate thiophenolato complexes. In the UV-visible spectra of the complexes, the positions of the Soret and band I have been found to be dependent on the pKa of thiophenols. The alternating shift pattern, which has opposite sign of the chemical shifts for meta- vs. ortho- and para-protons in the (1)H NMR spectra, is attributed to negative and positive spin densities, respectively, on thiophenolate carbon atoms and is indicative of π-spin delocalization to the bound thiophenolate ligand. The Fe(III)/Fe(II) redox couple of the complexes bears a linear relationship with the pKa of thiophenol and is found to be positively shifted with decreasing pKa. The effect of the electronic nature of the substituent on the thiophenolate ring has also been demonstrated in which a large potential range of 540 mV was observed (in contrast to the value of only 270 mV in case of monoheme analogues) for the Fe(III)/Fe(II) redox couple on going from monoheme to diheme and is attributed to the interheme interaction. Also, the Fe(III)/Fe(II) redox potential of the thiophenolato complexes has been found to be more positively shifted compared to their phenolato analogues, which was further supported by DFT calculation. The addition of another thiophenol at the sixth axial position of the five-coordinate thiophenolato complex causes a change in iron spin from high (S = 5/2) to low (S = 1/2) along with a large positive shift of 490 mV for the Fe(III)/Fe(II) redox couple.
作为双血红素蛋白的模型,研究了一系列取代硫酚作为轴向配体在高度柔性的乙烷桥连双铁(III)双卟啉骨架上的结合情况。光谱表征表明,所有五配位硫酚盐配合物中的铁均处于高自旋(S = 5/2)状态。在配合物的紫外可见光谱中,发现Soret带和I带的位置取决于硫酚的pKa。在(1)H NMR光谱中,间位与邻位和对位质子的化学位移具有相反符号的交替位移模式,分别归因于硫酚盐碳原子上的负自旋密度和正自旋密度,这表明π自旋离域到了结合的硫酚盐配体上。配合物的Fe(III)/Fe(II)氧化还原对与硫酚的pKa呈线性关系,并且发现随着pKa的降低而正向移动。还证明了硫酚盐环上取代基的电子性质的影响,从单血红素到双血红素,Fe(III)/Fe(II)氧化还原对观察到540 mV的大电位范围(与单血红素类似物仅270 mV的值形成对比),这归因于血红素间的相互作用。此外,与酚盐类似物相比,硫酚盐配合物的Fe(III)/Fe(II)氧化还原电位正向移动更大,这得到了密度泛函理论计算的进一步支持。在五配位硫酚盐配合物的第六个轴向位置添加另一种硫酚会导致铁自旋从高(S = 5/2)变为低(S = 1/2),同时Fe(III)/Fe(II)氧化还原对正向移动490 mV。