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A Tetranitrosyl [4Fe–4S] Cluster Forms En Route to Roussin’s Black Anion: Nitric Oxide Reactivity of [Fe4S4(LS3)L′]2–

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Figshare2016-02-17 更新2026-04-29 收录
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https://figshare.com/articles/dataset/A_Tetranitrosyl_4Fe_4S_Cluster_Forms_En_Route_to_Roussin_s_Black_Anion_Nitric_Oxide_Reactivity_of_Fe_sub_4_sub_S_sub_4_sub_LS_sub_3_sub_L_sup_2_sup_/2290846
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Previous studies provide evidence that [4Fe–4S] clusters serve as targets of reactive nitrogen oxide species in biology. The products of this reaction range from dinitrosyliron complexes, [Fe­(NO)2L2]−, to Roussin’s black anion, [Fe4S3(NO)7]−. To date, the pathways by which these reactions occur have not been fully elucidated. In this study, we prepared the site-differentiated complexes [Fe4S4(LS3)­L′]2– (LS3 = 1,3,5-tris­(4,6-dimethyl-3-mercaptophenylthio)-2,4,6-tris­(p-tolylthio)­benzene; L′ = Cl, SEt, SPh, N3, 2-SPyr, Tp, S2CNEt2) to serve as synthetic models for biological [4Fe–4S] clusters and studied their reactivity toward NO­(g) and Ph3CSNO. The products were characterized by X-ray crystallography, mass spectrometry, and IR, electron paramagnetic resonance (EPR), and 1H NMR spectroscopy. In all cases reported here, the reactions proceed via formation of the S = 1/2 species [Fe4S4(NO)4]−, which ultimately converts to EPR-silent [Fe4S3(NO)7]−.
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2016-02-17
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