首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Protonation of bridging sulfur in cubanoid Fe4S4 clusters causes large geometric changes: the theory of geometric and electronic structure
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Protonation of bridging sulfur in cubanoid Fe4S4 clusters causes large geometric changes: the theory of geometric and electronic structure

机译:古巴铜Fe4S4团簇中桥联硫的质子化导致大的几何变化:几何和电子结构理论

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Density functional calculations indicate that protonation of a mu(3)-S atom in cubanoid clusters [Fe4S4X4](2-) leads to a large extension of one Fe-S(H) bond such that the SH ligand is doubly-bridging, mu-SH. Triplybridging SH in these clusters is unstable, relative to mu-SH. The theory for the geometric and electronic structures of the protonated [Fe4S4X4](2-) clusters (X = Cl, SEt, SMe, SPh, OMe, OPh) is presented in this paper. The principal results are (1) the unique Fe atom in [Fe4S3(SH)X-4](-) is three-coordinate, with planar or approximately planar stereochemistry, (2) approximately equi-energetic endo and exo isomers occur for pyramidal mu-SH, (3) the structural changes caused by protonation reverse without barrier on deprotonation, (4) the most stable electronic states have S = 0 and oppositely signed spin densities on the Fe atoms bearing the mu-SH bridge, (5) interconversions between endo and exo isomers, and between ground and excited states, occur through concerted lengthenings and shortenings of Fe-S(H) interactions, on relatively flat energy surfaces, (6) protonation of an X ligand does not change the characteristics of protonation of mu(3)-S. Experimental tests of this theory are suggested, and applications discussed.
机译:密度泛函计算表明,古巴扁豆簇[Fe4S4X4](2-)中的mu(3)-S原子的质子化导致一个Fe-S(H)键的大量延伸,从而使SH配体双桥化,mu -SH。相对于mu-SH,这些簇中的三桥SH是不稳定的。本文提出了质子化的[Fe4S4X4](2-)团簇(X = Cl,SEt,SMe,SPh,OMe,OPh)的几何和电子结构的理论。主要结果是:(1)[Fe4S3(SH)X-4](-)中的唯一Fe原子为三坐标,具有平面或近似平面的立体化学,(2)约等能的内和外异构体发生在金字塔形上mu-SH,(3)由质子反​​转引起的结构变化,无去质子障碍,(4)最稳定的电子态具有S = 0,并且在带有mu-SH桥的Fe原子上具有相反的自旋密度,(5)内,外异构体之间,基态和激发态之间的相互转化是通过在相对平坦的能量表面上一致地延长和缩短Fe-S(H)相互作用而实现的(6)X配体的质子化不会改变质子化的特性的mu(3)-S。建议对该理论进行实验测试,并讨论其应用。

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