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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Cooperativity and intermediates in the equilibrium reactions of Fe(II,III) with ethanethiolate in N-methylformamide solution
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Cooperativity and intermediates in the equilibrium reactions of Fe(II,III) with ethanethiolate in N-methylformamide solution

机译:Fe(II,III)与乙硫醇盐在N-甲基甲酰胺溶液中的平衡反应中的配合性和中间体

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The reaction of FeCl2 or FeCl3 with sodium ethanethiolate (SEt) in N-methylformamide (NMF) has been reevaluated to rectify a previous Fe(II) oxidation artifact. On titrating Fe(II) with EtS- concentrations up to 12 mol Eq, new features in the UV/vis spectrum (epsilon(344) =(3.1 +/- 0.2) x 10(3) M-1 cm(-1); epsilon(486)=(4.5 +/- 0.1) x 10(2) M-1 cm(-1)) indicated that the first observable step was the formation of a single complex different from the known tetrahedral tetrathiolate, [Fe(SEt)(4)](2-). As the EtS- concentration increased past 12.5 mol Eq the UV/ vis spectrum gradually transformed to that of [Fe( SEt) (4)](2-) (lambda(max) = 314 nm). A Hill-formalism fit to the titration data of the initially formed complex indicated cooperative ligation by three ethanethiolate ions, with K-coop =(1.7 +/- 0.1) x 10(3) M-3 and Hill "n''= 2.4 +/- 0.1 ( r= 0.997). The 3: 1 EtS- - Fe( II) complex is proposed to be [Fe-2(SEt)(6)](2-). Titration of Fe(III) with EtS- showed direct cooperative formation of [Fe(SEt)(4)](-) [epsilon(340) =(3.4 +/- 0.5) x 10(3) M-1 cm(-1)] with a Hill-formalism K-coop =(4.3 +/- 0.1) x 10(2) M-4 and a Hill coefficient "n''= 3.7 +/- 0.2 ( r= 0.996). Further ligation past [Fe(S-Et) (4)](-) was observed at EtS- concentrations above 35 mol Eq. The Fe( III) Hill constants are at variance with our previous report. However, the UV/ vis spectrum of Fe( III) in NMF solution was found to change systematically over time, consistent with a slow progressive deprotonation of [Fe(nmf)](3+). The observed time-to-time differences in the equilibrium chemistry of Fe( III) with ethanethiolate in NMF thus reflect variation in the microscopic solution composition of FeCl3 in alkaline NMF solvent. These results are related to the chemistry of nitrogenase FeMo cofactor in alkaline NMF solution.
机译:已重新评估了FeCl2或FeCl3与乙硫醇钠(SEt)在N-甲基甲酰胺(NMF)中的反应,以纠正先前的Fe(II)氧化伪影。在滴定浓度高达12 mol Eq的EtS-的Fe(II)时,UV / vis光谱中的新特征(ε(344)=(3.1 +/- 0.2)x 10(3)M-1 cm(-1) ; epsilon(486)=(4.5 +/- 0.1)x 10(2)M-1 cm(-1))表明,可观察到的第一步是形成与已知的四面体四硫醇盐[Fe( SEt)(4)](2-)。随着EtS-浓度增加超过12.5 mol Eq,UV / vis光谱逐渐转变为[Fe(SEt)(4)](2-)(λ(max)= 314 nm)。希尔形式主义拟合最初形成的络合物的滴定数据,表明通过三个乙硫醇盐离子进行协作连接,K-coop =(1.7 +/- 0.1)x 10(3)M-3,希尔“ n” = 2.4 +/- 0.1(r = 0.997)。3:1 EtS--Fe(II)络合物被提议为[Fe-2(SEt)(6)](2-)。用EtS滴定Fe(III) -显示了[Fe(SEt)(4)](-)[epsilon(340)=(3.4 +/- 0.5)x 10(3)M-1 cm(-1)]的直接协作形成,并带有Hill形式主义K-coop =(4.3 +/- 0.1)×10(2)M-4,并且希尔系数“ n” = 3.7 +/- 0.2(r = 0.996)。在高于35 mol Eq的EtS-浓度下观察到超过[Fe(S-Et)(4)](-)的进一步连接。 Fe(III)Hill常数与我们先前的报告存在差异。但是,发现NMF溶液中Fe(III)的UV / vis光谱随时间发生系统性变化,这与[Fe(nmf)](3+)的缓慢去质子化相一致。 Fe(III)与乙硫醇盐在NMF中的平衡化学中观察到的时间差异因此反映了FeCl3在碱性NMF溶剂中的微观溶液组成的变化。这些结果与碱性NMF溶液中固氮酶FeMo辅因子的化学性质有关。

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