Kundakarla Nagabhushanam, Lindeman Sergey, Rahman Md Hafiz, Ryan Michael D
Marquette University , Chemistry Department, P.O. Box 1881, Milwaukee, Wisconsin 53201, United States.
Inorg Chem. 2016 Mar 7;55(5):2070-5. doi: 10.1021/acs.inorgchem.5b02384. Epub 2016 Feb 17.
The preparation and characterization of the iron octaethylporphyrin nitroxyl ion, [Fe(OEP)(NO)(-)], is reported. The complex was synthesized by the one-electron reduction of Fe(OEP)(NO) using anthracenide as the reducing agent. The compound was isolated as the potassium (2.2.2)cryptand salt. The anion was characterized using X-ray analysis with visible and infrared spectroscopy. The spectral features of the iron nitroxyl complex were consistent with previous literature reports. The important structural changes upon reduction were a significant decrease in the Fe-N-O bond angle from 142° to 127° and an increase in the N-O bond length from that in the starting nitrosyl moiety. The porphyrin ring became significantly less planar upon reduction, but the displacement of the iron atom from the 24-atom plane was essentially unchanged. In spite of the attempt to encapsulate the potassium ion with the (2.2.2)cryptand, significant interaction between K(+) and the oxygen of the nitroxyl were observed, indicating a contact ion pair in the crystal structure. Comparison between the experimental structure and the DFT-calculated parameters were reported. The results are consistent with the Fe-N-O moiety being the site of the reduction, with little evidence for the reduction of the iron itself or the porphyrin ring. The proton NMR spectrum was also obtained, and the chemical shifts were significantly different from other S = 0 metalloporphyrin complexes. These shifts, though, were consistent with the DFT calculations.
报道了八乙基卟啉铁硝酰离子[Fe(OEP)(NO)(-)]的制备与表征。该配合物通过以蒽负离子为还原剂对Fe(OEP)(NO)进行单电子还原合成。该化合物以钾(2.2.2)穴醚盐的形式分离出来。使用X射线分析以及可见光谱和红外光谱对阴离子进行了表征。铁硝酰配合物的光谱特征与先前的文献报道一致。还原时重要的结构变化是Fe-N-O键角从142°显著减小到127°,以及N-O键长比起始亚硝酰部分有所增加。卟啉环在还原后平面度显著降低,但铁原子相对于24原子平面的位移基本不变。尽管尝试用(2.2.2)穴醚包裹钾离子,但观察到K(+)与硝酰的氧之间存在显著相互作用,表明晶体结构中存在接触离子对。报道了实验结构与DFT计算参数之间的比较。结果表明Fe-N-O部分是还原位点,几乎没有证据表明铁本身或卟啉环发生了还原。还获得了质子核磁共振谱,其化学位移与其他S = 0金属卟啉配合物有显著差异。不过,这些位移与DFT计算结果一致。