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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Spectroscopic properties and electronic structure of five- and six-coordincate iron(II) porphyrin NO complexes: Effect of the axial N-donor ligand
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Spectroscopic properties and electronic structure of five- and six-coordincate iron(II) porphyrin NO complexes: Effect of the axial N-donor ligand

机译:五和六配位铁(II)卟啉NO配合物的光谱性质和电子结构:轴向N供体配体的影响

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In this paper, the differences in the spectroscopic properties and electronic structures of five- and six-coordinate iron(II) porphyrin NO complexes are explored using [Fe(TPP)(NO)] (1; TPP = tetraphenylporphyrin) and [Fe(TPP)(Ml)(NO)] (2; MI = 1-methylimidazole) type systems. Binding of N-donor ligands in axial position trans to NO to five-coordinate complexes of type 1 is investigated using UV-vis absorption and H-1 NMR spectroscopies. This way, the corresponding binding constants K-eq are determined and the H-1 NMR spectra of 1 and 2 are assigned for the first time. In addition, H-1 NMR allows for the determination of the degree of denitrosylation in solutions of I with excess base. The influence of the axial ligand on the properties of the coordinated NO is then investigated. Vibrational spectra (IR and Raman) of 1 and 2 are presented and assigned using isotope substitution and normal-coordinate analyses. Obtained force constants are 12.53 (N-O) and 2.98 mdyn/angstrom (Fe-NO) for 1 compared to 11.55 (N-O) and 2.55 mdyn/angstrom (Fe-NO) for 2. Together with the NMR results, this provides experimental evidence that binding of the trans ligand weakens the Fe-NO bond. The principal bonding schemes of 1 and 2 are very similar. In both cases, the Fe-N-O subunit is strongly bent. Donation from the singly occupied pi* orbital of NO into d(z2) of iron(II) leads to the formation of an Fe-NO sigma bond. In addition, a medium-strong,T back-bond is present in these complexes. The most important difference in the electronic structures of 1 and 2 occurs for the Fe-NO a bond, which is distinctively stronger for 1 in agreement with the experimental force constants. The increased sigma donation from NO in 1 also leads to a significant transfer of spin density from NO to iron, as has been shown by magnetic circular dichroism (MCD) spectroscopy in a preceding Communication (Praneeth, V. K. K.; Neese, F.; Lehnert, N. Inorg. Chem. 2005, 44, 2570-2572). This is confirmed by the H-1 NMR results presented here. Hence, further experimental and computational evidence is provided that complex 1 has noticeable (FeNO+)-N-1 character relative to 2, which is an (FeNO)-N-II(radical) complex. Finally, using MCD theory and quantum chemical calculations, the absorption and MCD C-term spectra of 1 and 2 are assigned for the first time.
机译:在本文中,使用[Fe(TPP)(NO)](1; TPP =四苯基卟啉)和[Fe(TP())来研究五配位和六配位的铁(II)卟啉NO配合物的光谱性质和电子结构的差异。 TPP)(M1)(NO)](2; MI = 1-甲基咪唑)型系统。使用紫外可见吸收和H-1 NMR光谱研究了N-供体配体在轴向位置上向NO的结合与1型五配位配合物的结合。这样,确定了相应的结合常数K-eq,并首次分配了1和2的H-1 NMR光谱。此外,H-1 NMR可以测定具有过量碱的I溶液中的亚硝基化程度。然后研究了轴向配体对配位NO性质的影响。给出了1和2的振动光谱(IR和拉曼光谱),并使用同位素取代和法线坐标分析进行了分配。 1的力常数为12.53(NO)和2.98 mdyn /埃(Fe-NO),2的力常数为11.55(NO)和2.55 mdyn /埃(Fe-NO)。再加上NMR结果,这提供了实验证据反式配体的结合减弱了Fe-NO键。 1和2的主要绑定方案非常相似。在这两种情况下,Fe-N-O亚基都强烈弯曲。从NO的单一占据pi *轨道向铁(II)的d(z2)的捐赠导致形成Fe-NOσ键。此外,这些复合物中还存在中等强度的T背键。 Fe-NO a键在1和2的电子结构中存在最重要的差异,与实验力常数一致,Fe-NO a键明显更强。如先前的通讯(Praneeth,VKK; Neese,F .; Lehnert,1)中的磁性圆二色性(MCD)光谱所表明的,从1中的NO中增加的sigma捐赠也导致自旋密度从NO到铁的大量转移。 N.Inorg.Chem.2005,44,2570-2572)。此处显示的H-1 NMR结果证实了这一点。因此,提供了进一步的实验和计算证据,相对于复合物1(FeNO)-N-II(自由基),复合物1具有明显的(FeNO +)-N-1性质。最后,使用MCD理论和量子化学计算,首次分配了1和2的吸收光谱和MCD C项光谱。

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