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Effect of the Sixth Axial Ligand in CS-Ligated Iron(II)octaethylporphyrinates – Structural and Mössbauer Studies

机译:第六轴向配体在CS取代的八乙基卟啉铁(II)中的作用-结构和Mössbauer研究

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摘要

The effect of a sixth ligand in a series of low-spin thiocarbonyl-ligated iron(II)octaethylporphyrinates has been investigated. Six-coordinate complexes have been synthesized and characterized by Mössbauer and infrared spectroscopy and single-crystal X-ray structure determinations. The results are compared with the five-coordinate parent complex. The crystal structures of [Fe(OEP)(CS)(1-MeIm)] and [Fe(OEP)(CS)(Py)] are reported and discussed. The 1-methylimidazole and pyridine derivatives exhibit Fe–C(CS) bond distances of 1.703(4) and 1.706(2) Å that are significantly longer than the 1.662(3) Å reported for five-coordinate [Fe(OEP)(CS)] (Scheidt, W. R.; Geiger, D. K. Inorg. Chem. >1982, 21, 1208). The trans Fe-N(ligand) distances of 2.112(3) A and 2.1550(15) Å observed for the 1-methylimidazole and pyridine complex are ~0.13 Å longer than those observed for analogous bis-ligated complexes and are consistent with a significant structural trans effect for the CS ligand. Mössbauer investigations carried out for five- and six-coordinate thiocarbonyl derivatives with several different sixth axial ligands reveal interesting features. All derivatives exhibit very small isomer shift values, consistent with a very strong interaction between iron and CS. The five-coordinate derivative has δFe = 0.08 mm/s and the six-coordinate complexes exhibit δFe = 0.14 to 0.19 mm/s at 4.2 K. The five-coordinate complex shows a large quadrupole splitting (ΔEq = 1.93 mm/s at 4.2 K) which is reduced on coordination of the sixth ligand (ΔEq = 0.42 to 0.80 mm/s at 4.2 K). Addition of a sixth ligand also leads to a small decrease in the value of νCS. Correlations in structural, IR, and Mössbauer results suggest that the sixth ligand effect is primarily induced by changes in σ bonding. The structure of [Fe(OEP)(CS)(CH3OH)] is briefly reported. Crystal data: [Fe(OEP)(CS)(1-MeIm)] crystallizes in the monoclinic system, space group P21, Z = 4, a = 9.5906(5) Å, b = 16.704(4) Å, c = 23.1417(6) Å, β = 100.453(7)°. [Fe(OEP)(CS)(Py)] crystallizes in the triclinic system, space group P1̄, Z = 5, a = 13.9073(6) Å, b = 16.2624(7) Å, c = 22.0709(9) Å, α = 70.586(1)°, β = 77.242(1)°, γ = 77.959(1)°. [Fe(OEP)(CS)(CH3OH)] crystallizes in the triclinic system, space group P1̄, Z = 1, a = 9.0599(5) Å, b = 9.4389(5) Å, c = 11.0676(6) Å, α = 90.261(1)°, β = 100.362(1)°, γ = 114.664(1)°.
机译:已经研究了第六种配体在一系列低旋硫羰基连接的八乙基卟啉铁(II)中的作用。合成了六坐标络合物,并通过Mössbauer和红外光谱以及单晶X射线结构测定进行了表征。将结果与五坐标父复合体进行比较。报告并讨论了[Fe(OEP)(CS)(1-MeIm)]和[Fe(OEP)(CS)(Py)]的晶体结构。 1-甲基咪唑和吡啶衍生物的Fe–C(CS)键距为1.703(4)和1.706(2)Å,比五坐标[Fe(OEP)(CS )](Scheidt,WR; Geiger,DK Inorg。Chem。> 1982 ,21,1208)。 1-甲基咪唑和吡啶配合物的反铁-N(配体)距离为2.112(3)A和2.1550(15)Å比类似的双连接配合物观察到的〜0.13Å长,这与显着一致CS配体的结构反式作用。对具有几种不同的第六轴向配体的五和六配位硫代羰基衍生物进行的Mössbauer研究揭示了有趣的特征。所有衍生物均显示出非常小的异构体位移值,这与铁和CS之间的非常强的相互作用相一致。五坐标导数的δFe= 0.08 mm / s,六坐标络合物在4.2 K时的δFe= 0.14至0.19 mm / s。五坐标复数显示出大的四极分裂(ΔEq= 1.93 mm / s在4.2 K在第六个配体的配位作用下(ΔEq= 0.42至0.80 mm / s,在4.2 K时)降低。第六种配体的加入也会导致νCS值的小幅下降。结构,IR和Mössbauer结果的相关性表明第六种配体效应主要是由σ键的变化引起的。简要报道了[Fe(OEP)(CS)(CH3OH)]的结构。晶体数据:[Fe(OEP)(CS)(1-MeIm)]在单斜晶系中结晶,空间群P21 / n,Z = 4,a = 9.5906(5)Å,b = 16.704(4)Å,c = 23.1417(6)Å,β= 100.453(7)°。 [Fe(OEP)(CS)(Py)]在三斜晶系中结晶,空间群P 1 ̄ ,Z = 5, a = 13.9073(6)Å, b = 16.2624(7)Å, c = 22.0709(9)Å,α = 70.586(1)°,β = 77.242(1)°,γ = 77.959(1)° 。 [Fe(OEP)(CS)(CH3OH)]在三斜晶系中结晶,空间群 P 1 ̄ ,Z = 1, a = 9.0599(5)Å, b = 9.4389(5)Å, c = 11.0676(6)Å,α = 90.261(1)°,β = 100.362(1)°,γ = 114.664(1)°。

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