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首页> 外文期刊>Inorganica Chimica Acta >Molecular structure of the methoxy-iron(III) derivative of 5,15-(o,o '(2-methyl-2 '-hydroxy-3,3 '-diamidobiphenyl)-diphenyl)-porphyrin and CO binding properties of iron(II)-pyridine complexes of 2,2 '-substituted biphenyl strapped porphyrins
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Molecular structure of the methoxy-iron(III) derivative of 5,15-(o,o '(2-methyl-2 '-hydroxy-3,3 '-diamidobiphenyl)-diphenyl)-porphyrin and CO binding properties of iron(II)-pyridine complexes of 2,2 '-substituted biphenyl strapped porphyrins

机译:5,15-(o,o'(2-甲基-2'-羟基-3,3'-二氨基联苯)-二苯基)-卟啉的甲氧基-铁(III)衍生物的分子结构和铁的CO结合性质II)2,2'-取代的联苯带状卟啉的吡啶配合物

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The molecular structure of the methoxy-iron(III) derivative 1(Me,OH)-Fe(OMe) of the strapped porphyrin (5,15-(o,o' (2-methyl-2'-hydroxy-3,3'diamidobiphenyl)-diphenyl)-porphyrin (I(Me,OH)) is reported. The 2-methyl-2'-hydroxy-substituted biphenyl unit and the porphyrin ring are covalently bound together by two amido-groups linking the 3,3'-positions of the biphenyl strap to two ortho-positions of the two meso-phenyl rings belonging to the 5,15-diphenylporphyrin. The iron(III) center present in 1(Me,OH)-Fe(OMe) is five-coordinate, high-spin (S=5/2). It is bonded to the four porphyrinato-nitrogens and the oxygen atom of the methoxy group. The mean-value of the four Fe-N-p distances is 2.060(4) Angstrom. The Fe-O bond length with the axial methoxy ligand is 1.867(3) A. The porphyrin core is both domed and ruffled. The doming is small, whereas the ruffling is more pronounced. The dihedral angle of the two phenyl moieties belonging to the biphenyl strap lies close to 105 degrees. The orientation of the entire strap lying over the porphyrin core is probably mainly determined by a strong hydrogen bond of 2.531(5) A linking the 2'-hydroxy group of the strap and the methoxy-oxygen bonded to the iron atom. This oxygen atom of the 2'-hydroxy strap substituent is also hydrogen bonded to the NH (N50) moiety of an amido group linking covalently the strap to the porphyrin. The binding of carbon monoxide to five-coordinate iron(II)-pyridine complexes of such porphyrins 1(Me,OH)-Fe(py) and 2(Me,OH)-Fe(py) (py = pyridine) has been explored. These carbonyl adducts 1(Me,OH)-(FeCO)-C-II(py) and 2(Me,OH)-(FeCO)-C-II(py) display, respectively, in THF and in KBr pellets, two v((CO)-C-12) stretching vibrations at 1966, 1944 and 1965 and 1938 cm(-1), respectively. The occurrence of two v((CO)-C-12) stretching vibrations indicates the presence of two Fe-C-O conformers in both compounds. However, these two carbonyl adducts enriched with (CO)-C-13 display only a single (CO)-C-13 NMR signal lying at 208.1 and 208.0 ppm, respectively. This result indicates that the two Fe-C-O conformers present in 1(Me,OH)-Fe-II(CO) (py) and 2(Me,OH)(FeCO)-C-II(py) I interconvert more rapidly than the NMR time scale. Moreover, an almost linear correlation is observed between the v((CO)-C-12) stretching vibrations and the C-13 chemical shifts of the (CO)-C-13 NMR signals in a series of iron(II) carbonyl adducts in which the second axial ligand of iron is pyridine, 1(Me,OH)Fe((CO)-C-13) (py) and 2(X,Y)-Fe((CO)-C-13) (py)[(X,Y)=(Me,OH), (Me,OMe), (H,H), (Me,Me), (OMe,OMe) and (NO2,NO2)].In these carbonyl adducts, the v((CO)-C-12) stretching vibrations vary between 1938 and 1987 cm(-1) and the chemical shifts delta(C-13) Of the C-13 NMR signals range from 202.5 to 208.1 ppm (versus TMS). Values of delta(C-13) as large or larger than 208 ppm are observed in myoglobins and hemoglobins of various origins and in peroxidases in which the second axial ligand of iron is a histidine. Although an involvement of a hydrogen bond between a distal histidine residue and the coordinated CO molecule in the large chemical shifts of the (CO)-C-13 NMR signals observed in these hemeproteins has been excluded, our model compounds, in which the axial ligand trans to CO is held constant, seem to indicate that the polarity of the 2'-OH biphenyl substituent of the porphyrin strap plays a role in the large chemical shifts of the (CO)-C-13 NMR signals observed in II(Me,OH)-Fe((CO)-C-13) (py) I and 2(Me,OH) -Fe((CO)-C-13)(py). (C) 1998 Elsevier Science S.A. All rights reserved. [References: 27]
机译:卟啉(5,15-(o,o'(2-methyl-2'-hydroxy-3)的甲氧基-铁(III)衍生物 1(Me,OH)-Fe(OMe)的分子结构报道了,3'二酰胺基联苯)-二苯基)-卟啉(I(Me,OH))。2-甲基-2'-羟基取代的联苯单元和卟啉环通过连接3′的两个酰胺基共价结合。联苯带的3,-位与属于5,15-二苯基卟啉的两个间苯环的两个邻位。铁(III)中心存在于 1(Me,OH)-Fe(OMe)中是五坐标的高自旋(S = 5/2)。它与四个卟啉-氮原子和甲氧基的氧原子键合。四个Fe-Np距离的平均值为2.060(4埃与轴向甲氧基配体的Fe-O键长度为1.867(3)A.卟啉核既呈圆顶状也呈皱纹状,圆顶较小,而波纹更明显,两个苯基部分的二面角属于联苯带的位置接近105度。卟啉核心上整个条带的排列可能主要由2.531(5)的强氢键决定,该氢键将条带的2'-羟基与与铁原子键合的甲氧基相连。 2'-羟基带取代基的该氧原子还氢键合至酰胺基的NH(N50)部分,该酰胺基将带共价连接至卟啉。一氧化碳与这类卟啉 1(Me,OH)-Fe(py)和 2(Me,OH)-Fe(py)的五配位铁(II)-吡啶配合物的结合(py =吡啶)已被探索。这些羰基加合物 1(Me,OH)-(FeCO)-C-II(py)和 2(Me,OH)-(FeCO)-C-II(py)在THF和分别在1966年,1944年和1965年以及1938 cm(-1)处的两个vr((CO)-C-12)拉伸振动KBr颗粒。出现两个v((CO)-C-12)拉伸振动表明两种化合物中均存在两个Fe-C-O构象异构体。但是,这两个富含(CO)-C-13的羰基加合物仅显示了一个单独的(CO)-C-13 NMR信号,分别位于208.1和208.0 ppm。该结果表明存在于 1(Me,OH)-Fe-II(CO)(py)和 2(Me,OH)(FeCO)-C-II(py)I中的两个Fe-CO构象异构体相互转换比NMR时标更快。此外,在一系列铁(II)羰基加合物中,v((CO)-C-12)拉伸振动与(CO)-C-13 NMR信号的C-13化学位移之间观察到几乎线性的相关性其中铁的第二个轴向配体是吡啶 1(Me,OH)Fe((CO)-C-13)(py)和 2(X,Y)-Fe((CO)-C-13 )(py) [(X,Y)=(Me,OH),(Me,OMe),(H,H),(Me,Me),(OMe,OMe)和(NO2,NO2)]。这些羰基加合物的v((CO)-C-12)拉伸振动在1938年至1987 cm(-1)之间变化,C-13 NMR信号的化学位移δ(C-13)在202.5至208.1 ppm之间(相对于TMS)。在各种来源的肌球蛋白和血红蛋白中以及在铁的第二轴向配体为组氨酸的过氧化物酶中观察到的δ(C-13)值大于或等于208 ppm。尽管排除了在这些血红蛋白中观察到的(CO)-C-13 NMR信号的大化学位移中远端组氨酸残基和配位的CO分子之间的氢键的参与,但我们的模型化合物中轴向配体反式至CO保持恒定,似乎表明卟啉带的2'-OH联苯取代基的极性在II(Me, OH)-Fe((CO)-C-13)(py)I和 2(Me,OH)-Fe((CO)-C-13)(py)。 (C)1998 Elsevier Science S.A.保留所有权利。 [参考:27]

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