Chemistry Department, Marquette University, P.O. Box 1881, Milwaukee, Wisconsin 53201, USA.
Inorg Chem. 2010 Aug 2;49(15):6948-54. doi: 10.1021/ic100614h.
The spectroelectrochemistry of iron porphinones and their nitrosyl complexes were examined by infrared spectroscopy, as well as ferrous octaethylporphyrin nitrosyl. With the use of d(8)-THF, the solvent was transparent down to 1200 cm(-1). For the porphinones, the reduction of the macrocycle ring could be observed by the changes in the nu(CO) band and, for the nitrosyl complex, the changes in the nitrosyl ligand were directly observable from the nu(NO) band. Formation of the ferrous complexes led to a small downshift in the nu(CO) band. Further reduction to the formal Fe("I") complex led to more complex spectra which were interpreted with the help of density functional theory (DFT) calculations. The reduction of Fe(OEP)(NO) and its porphinone analogues was also examined. The reduction of the iron porphyrin and porphinone nitrosyl complexes lead to substantial decreases in the nu(NO) band from 1665 to 1670 cm(-1) to 1442-3 cm(-1). The energy of the nu(NO) band in the reduced complex was unaffected by the presence of carbonyl groups on the porphinone ring, indicating little additional delocalization of the electron density of the Fe-NO moiety because of the carbonyl groups. The identity of the nu(NO) bands was confirmed with (15)N substitution of the Fe(OEP)(NO) complex. The nu(CO) band on the porphinone ring was found to be sensitive to the degree than electron density was delocalized to the ring.
铁卟啉及其亚硝酰配合物的光谱电化学研究采用红外光谱法进行,同时也研究了二价铁八乙基卟啉亚硝酰配合物。使用 d(8)-THF 作为溶剂,其透明度可低至 1200 cm(-1)。对于卟啉环,通过 ν(CO)带的变化可以观察到大环环的还原,对于亚硝酰配合物,可以直接从 ν(NO)带观察到亚硝酰配体的变化。亚铁配合物的形成导致 ν(CO)带的小位移。进一步还原为形式上的 Fe("I")配合物会导致更复杂的光谱,这些光谱可以借助密度泛函理论(DFT)计算进行解释。还研究了 Fe(OEP)(NO)及其卟啉酮类似物的还原。铁卟啉和卟啉酮亚硝酰配合物的还原导致 ν(NO)带从 1665-1670 cm(-1)显著降低至 1442-3 cm(-1)。还原后配合物中 ν(NO)带的能量不受卟啉酮环上羰基的影响,这表明由于羰基的存在,Fe-NO 部分的电子密度的离域性几乎没有增加。通过 (15)N 取代 Fe(OEP)(NO)配合物证实了 ν(NO)带的身份。发现卟啉酮环上的 ν(CO)带对电子密度离域到环的程度非常敏感。