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硼氢化物、叠氮化物和氯离子作为铁/钼/硫簇上的端基配体。[(Cl4-cat)(PPr3)MoFe3S4(X)2]2(Bu4N)4和[(Cl4-cat)(PPr3)MoFe3S4(PPr3)(X)]2(Bu4N)2(X = N3-、BH4-、Cl-)双稠合立方烷的合成、结构与表征。[(Cl4-cat)(PPr3)MoFe3S4(BH4)2]2(Bu4N)4的核磁共振反应性研究。

Borohydride, azide, and chloride anions as terminal ligands on Fe/Mo/S clusters. Synthesis, structure and characterization of [(Cl4-cat)(PPr3) MoFe3S4(X)2]2(Bu4N)4 and [(Cl4-cat)(PPr3)MoFe3S4 (PPr3)(X)]2(Bu4N)2 (X = N3-, BH4-, Cl-) double-fused cubanes. NMR reactivity studies of [(Cl4-cat)(PPr3) MoFe3S4(BH4)2]2(Bu4N)4.

作者信息

Koutmos Markos, Georgakaki Irene P, Coucouvanis Dimitri

机构信息

Department of Chemistry, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

Inorg Chem. 2006 May 1;45(9):3648-56. doi: 10.1021/ic052156b.

DOI:10.1021/ic052156b
PMID:16634597
Abstract

Our explorations of the reactivity of Fe/Mo/S clusters of some relevance to the FeMoco nitrogenase have led to new double-fused cubane clusters with the Mo2Fe6S8 core as derivatives of the known (Cl4-cat)2Mo2Fe6S8(PPr3)6 (I) fused double cubane. The new clusters have been obtained by substitution reactions of the PPr3 ligands with Cl-, BH4-, and N3-. By careful control of the conditions of these reactions, the clusters [(Cl4-cat)(PPr3)MoFe3S4(BH4)2]2(Bu4N)4 (II), [(Cl4-cat)(PPr3)MoFe3S4(PPr3)(BH4)]2(Bu4N)2 (III), [(Cl4-cat)(PPr3)MoFe3S4(N3)2]2(Bu4N)4 (IV), [(Cl4-cat)(PPr3)MoFe3S4(PPr3)(N3)]2(Bu4N)2 (V), and [(Cl4-cat)(PPr3)MoFe3S4Cl2]2(Et4N)4 (VI) have been obtained and structurally characterized. A study of their electrochemistry shows that the reduction potentials for the derivatives of I are shifted to more positive values than those of I, suggesting a stabilization of the reduced clusters by the anionic ligands BH4- and N3-. Using 1H NMR spectroscopy, we have explored the lability of the BH4- ligand in II in coordinating solvents and its hydridic character, which is apparent in its reactivity toward proton sources such as MeOH or PhOH.

摘要

我们对一些与铁钼辅基固氮酶相关的铁/钼/硫簇反应活性的探索,得到了以Mo₂Fe₆S₈为核心的新型双稠合立方烷簇,它们是已知的(Cl₄-cat)₂Mo₂Fe₆S₈(PPr₃)₆(I)稠合双立方烷的衍生物。通过用Cl⁻、BH₄⁻和N₃⁻取代PPr₃配体,得到了这些新簇。通过仔细控制这些反应的条件,得到了簇[(Cl₄-cat)(PPr₃)MoFe₃S₄(BH₄)₂]₂(Bu₄N)₄(II)、[(Cl₄-cat)(PPr₃)MoFe₃S₄(PPr₃)(BH₄)]₂(Bu₄N)₂(III)、[(Cl₄-cat)(PPr₃)MoFe₃S₄(N₃)₂]₂(Bu₄N)₄(IV)、[(Cl₄-cat)(PPr₃)MoFe₃S₄(PPr₃)(N₃)]₂(Bu₄N)₂(V)和[(Cl₄-cat)(PPr₃)MoFe₃S₄Cl₂]₂(Et₄N)₄(VI),并对其进行了结构表征。对它们的电化学研究表明,I的衍生物的还原电位比I的还原电位向更正的值移动,这表明阴离子配体BH₄⁻和N₃⁻使还原簇更加稳定。利用¹H NMR光谱,我们研究了II中BH₄⁻配体在配位溶剂中的不稳定性及其氢化物特性,这在其与质子源如MeOH或PhOH的反应性中很明显。

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