Wyllie Graeme R A, Schulz Charles E, Scheidt W Robert
Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, USA.
Inorg Chem. 2003 Sep 8;42(18):5722-34. doi: 10.1021/ic034473t.
We report structural and spectroscopic data for a series of six-coordinate (nitrosyl)iron(II) porphyrinates. The structures of three tetraphenylporphyrin complexes [Fe(TPP)(NO)(L)], where L = 4-(dimethylamino)pyridine, 1-methylimidazole, 4-methylpiperidine, are reported here to a high degree of precision and allow observation of several previously unobserved structural features. The tight range of bonding parameters for the [FeNO] moiety for these three complexes suggests a canonical representation for six-coordinate systems (Fe-N(p) = 2.007 A, Fe-N(NO) = 1.753 A, angle FeNO = 138.5 degrees ). Comparison of these data with those obtained previously for five-coordinate systems allows the precise determination of the structural effects of binding a sixth ligand. These include lengthening of the Fe-N(NO) bond and a decrease in the Fe-N-O angle. Several other aspects of the geometry of these systems are also discussed, including the first examples of off-axis tilting of a nitrosyl ligand in a six-coordinate FeNO heme system. We also report the first examples of Mössbauer studies for these complexes. Measurements have been made in several applied magnetic fields as well as in zero field. The spectra differ from those of their five-coordinate analogues. To obtain reasonable fits to applied magnetic field data, rotation of the electrical field gradient is required, consistent with differing g-tensor orientations in the five- vs six-coordinate species.
我们报告了一系列六配位(亚硝酰基)铁(II)卟啉配合物的结构和光谱数据。本文详细报道了三种四苯基卟啉配合物[Fe(TPP)(NO)(L)]的结构,其中L = 4-(二甲基氨基)吡啶、1-甲基咪唑、4-甲基哌啶,这些结构数据精度很高,使我们能够观察到一些以前未观察到的结构特征。这三种配合物中[FeNO]部分紧密的键合参数范围表明了六配位体系的典型表示形式(Fe-N(p) = 2.007 Å,Fe-N(NO) = 1.753 Å,FeNO键角 = 138.5度)。将这些数据与之前获得的五配位体系的数据进行比较,可以精确确定结合第六个配体的结构效应。这些效应包括Fe-N(NO)键的延长和Fe-N-O键角的减小。我们还讨论了这些体系几何结构的其他几个方面,包括六配位FeNO血红素体系中亚硝酰基配体离轴倾斜的首个例子。我们还报告了这些配合物的穆斯堡尔谱研究的首个例子。测量是在几个外加磁场以及零场中进行的。这些光谱与它们五配位类似物的光谱不同。为了合理拟合外加磁场数据,需要电场梯度的旋转,这与五配位和六配位物种中不同的g张量取向一致。