Department of Chemistry, Johns Hopkins University, Baltimore, Maryland 21218, USA.
J Am Chem Soc. 2010 Jan 13;132(1):157-67. doi: 10.1021/ja904818z.
A new five-coordinate, (N(4)S(thiolate))Fe(II) complex, containing tertiary amine donors, [Fe(II)(Me(4)[15]aneN(4))(SPh)]BPh(4) (2), was synthesized and structurally characterized as a model of the reduced active site of superoxide reductase (SOR). Reaction of 2 with tert-butyl hydroperoxide (tBuOOH) at -78 degrees C led to the generation of the alkylperoxo-iron(III) complex Fe(III)(Me(4)[15]aneN(4))(SPh)(OOtBu) (2a). The nonthiolate-ligated complex, [Fe(II)(Me(4)[15]aneN(4))(OTf)(2)] (3), was also reacted with tBuOOH and yielded the corresponding alkylperoxo complex Fe(III)(Me(4)[15]aneN(4))(OTf)(OOtBu) (3a) at an elevated temperature of -23 degrees C. These species were characterized by low-temperature UV-vis, EPR, and resonance Raman spectroscopies. Complexes 2a and 3a exhibit distinctly different spectroscopic signatures than the analogous alkylperoxo complexes Fe(III)([15]aneN(4))(SAr)(OOR), which contain secondary amine donors. Importantly, alkylation at nitrogen leads to a change from low-spin (S = 1/2) to high-spin (S = 5/2) of the iron(III) center. The resonance Raman data reveal that this change in spin state has a large effect on the nu(Fe-O) and nu(O-O) vibrations, and a comparison between 2a and the nonthiolate-ligated complex 3a shows that axial ligation has an additional significant impact on these vibrations. To our knowledge this study is the first in which the influence of a ligand trans to a peroxo moiety has been evaluated for a structurally equivalent pair of high-spin/low-spin peroxo-iron(III) complexes. The implications of spin state and thiolate ligation are discussed with regard to the functioning of SOR.
一种新的五配位(N(4)S(硫醇ate))Fe(II)配合物,含有叔胺供体,[Fe(II)(Me(4)[15]aneN(4))(SPh)]BPh(4)(2),被合成并作为超氧化物还原酶(SOR)还原活性位点的模型进行了结构表征。在-78°C下,2 与叔丁基过氧化物(tBuOOH)反应生成了烷基过氧铁(III)配合物Fe(III)(Me(4)[15]aneN(4))(SPh)(OOtBu)(2a)。非硫醇配体配合物[Fe(II)(Me(4)[15]aneN(4))(OTf)(2)](3)也与 tBuOOH 反应,并在-23°C的较高温度下生成相应的烷基过氧配合物Fe(III)(Me(4)[15]aneN(4))(OTf)(OOtBu)(3a)。这些物种通过低温紫外可见光谱、EPR 和共振拉曼光谱进行了表征。配合物 2a 和 3a 表现出与含有仲胺供体的类似烷基过氧配合物Fe(III)([15]aneN(4))(SAr)(OOR)明显不同的光谱特征。重要的是,氮的烷基化导致铁(III)中心从低自旋(S = 1/2)变为高自旋(S = 5/2)。共振拉曼数据表明,这种自旋态的变化对 nu(Fe-O)和 nu(O-O)振动有很大的影响,并且 2a 和非硫醇配体配合物 3a 的比较表明轴向配体对这些振动有额外的显著影响。据我们所知,这项研究是首次评估配体在结构等效的高自旋/低自旋过氧铁(III)配合物中对过氧基团的影响。讨论了自旋态和硫醇配体的结合对 SOR 功能的影响。