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Effect of Cyanide Ligands on the Electronic Structure of [FeFe] Hydrogenase Active-Site Model Complexes with an Azadithiolate Cofactor

机译:氰化物配体对[FeFe]氢化酶活性位点模型与氮杂二硫键辅因子的电子结构的影响

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A detailed characterization of a close synthetic model of the [2Fe]H subcluster in the [FeFe] hydrogenase active site is presented. It contains the full primary coordination sphere of the CO-inhibited oxidized state of the enzyme including the CN- ligands and the azadithiolate (adt) bridge, [((m-S-CH2)2NR)Fe2ACHTUNGTRENUNG(CO)4-ACHTUNGTRENUNG(CN)2]2-, R=CH2ACHTUNGTRENUNGCH2ACHTUNGTRENUNGSCH3. The electronic structure of the model complex in its FeIFeII state was investigated by means of density functional theory (DFT) calculations and Fourier transform infrared (FTIR) spectroscopy. By using a combination of continuouswave (CW) electron paramagnetic resonance (EPR) and hyperfine sublevel correlation (HYSCORE) experiments as well as DFT calculations, it is shown that, for this complex, the spin density is delocalized over both iron atoms. Interestingly, we found that the nitrogen hyperfine coupling, which represents the interaction between the unpaired electron and the nitrogen at the dithiolate bridge, is slightly larger than that in the analogous complex in which the CN- ligands are replaced with PMe3 ligands. This reveals, first, that the CN-/ PMe3 ligands coordinated to the iron core are electronically coupled to the amine in the adt bridge. Second, the CN- ligands in this complex are somewhat stronger s-donor ligands than the PMe3 ligand, and thereby enable more spin density to be transferred from the Fe core to the adt unit, which might in turn affect the reactivity of the bridging amine.
机译:提出了[FeFe]氢化酶活性位点[2Fe] H亚簇的紧密合成模型的详细表征。它包含酶的CO抑制氧化态的完整主要配位域,包括CN配体和硫唑二硫代(adt)桥,[((mS-CH2)2NR)Fe2ACHTUNGTRENUNG(CO)4-ACHTUNGTRENUNG(CN)2 ] 2-,R = CH 2 ACHTUNGTRENUNGCH 2 ACHTUNGTRENUNGSCH3。通过密度泛函理论(DFT)计算和傅立叶变换红外(FTIR)光谱研究了FeIFeII状态下的模型复合物的电子结构。通过结合使用连续波(CW)电子顺磁共振(EPR)和超精细子级相关性(HYSCORE)实验以及DFT计算,结果表明,对于这种复合物,自旋密度在两个铁原子上都离域了。有趣的是,我们发现氮的超精细偶合代表了未成对的电子与二硫醇桥上的氮之间的相互作用,比其中CN-配体被PMe3配体代替的类似配合物中的偶合稍大。首先,这表明与铁核配位的CN- / PMe3配体与adt桥中的胺电子偶联。第二,该络合物中的CN-配体比PMe3配体更强的s-给体配体,从而使更多的自旋密度从Fe核转移到adt单元,这可能反过来影响桥连胺的反应性。 。

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