Pavlik Jeffrey W, Peng Qian, Silvernail Nathan J, Alp E Ercan, Hu Michael Y, Zhao Jiyong, Sage J Timothy, Scheidt W Robert
Department of Chemistry and Biochemistry, University of Notre Dame , Notre Dame, Indiana 46556, United States.
Inorg Chem. 2014 Mar 3;53(5):2582-90. doi: 10.1021/ic4028964. Epub 2014 Feb 14.
The vibrational spectra of two five-coordinate nitrosyl iron porphyrinates, [Fe(OEP)(NO)] (OEP = dianion of 2,3,7,8,12,13,17,18-octaethylporphyrin) and [Fe(DPIX)(NO)] (DPIX = deuteroporphyrin IX), have been studied by oriented single-crystal nuclear resonance vibrational spectroscopy. Single crystals (both are in the triclinic crystal system) were oriented to give vibrational spectra perpendicular to the porphyrin plane. Additionally, two orthogonal in-plane measurements that were also either perpendicular or parallel to the projection of the FeNO plane onto the porphyrin plane yield the complete set of vibrations with iron motion. In addition to cleanly enabling the assignment of the FeNO bending and stretching modes, the measurements reveal that the two in-plane spectra from the parallel and perpendicular in-plane directions for both compounds have substantial differences. The assignment of these in-plane vibrations were aided by density functional theory predictions. The differences in the two in-plane directions result from the strongly bonded axial NO ligand. The direction of the in-plane iron motion is thus found to be largely parallel and perpendicular to the projection of the FeNO plane on the porphyrin plane. These axial ligand effects on the in-plane iron motion are related to the strength of the axial ligand-to-iron bond.
通过取向单晶核磁共振振动光谱法研究了两种五配位亚硝酰基铁卟啉化合物[Fe(OEP)(NO)](OEP = 2,3,7,8,12,13,17,18 - 八乙基卟啉二价阴离子)和[Fe(DPIX)(NO)](DPIX = 原卟啉IX)的振动光谱。将单晶(二者均属于三斜晶系)取向,以获得垂直于卟啉平面的振动光谱。此外,另外两个与FeNO平面在卟啉平面上的投影垂直或平行的面内正交测量,给出了包含铁运动的完整振动集。除了能够清晰地确定FeNO弯曲和伸缩模式外,测量结果还表明,两种化合物在平行和面内垂直方向上的两个面内光谱存在显著差异。密度泛函理论预测有助于对这些面内振动进行归属。两个面内方向的差异源于强键合的轴向NO配体。因此发现面内铁运动的方向在很大程度上与FeNO平面在卟啉平面上的投影平行和垂直。这些轴向配体对面内铁运动的影响与轴向配体 - 铁键的强度有关。