首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Spin state and reactivity of iron(IV)oxido complexes with tetradentate bispidine ligands
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Spin state and reactivity of iron(IV)oxido complexes with tetradentate bispidine ligands

机译:铁(IV)氧化钒配合物的旋转状态和反应性与四戊酸萘哌啶配体

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摘要

The iron(IV)oxido complex [(bispidine)Fe-IV=O(Cl)](+) is shown by experiment and high-level DLPNO-CCSD(T) quantum-chemical calculations to be an extremely short-lived and very reactive intermediate-spin (S = 1) species. At temperatures as low as -90 degrees C, it decays with a half-life of approx. two minutes, and this is the reason why, so far, it remained undetected and why it is extremely difficult to trap and fully characterize this interesting and extremely efficient oxidant. The large difference in reactivity between [(bispidine)Fe-IV=O(Cl)](+) and [(bispidine)Fe-IV=O(MeCN)](2+) (at least two orders of magnitude), while both oxido-iron(IV) complexes have very similar structures and an S = 1 electronic ground state, is presumably due to the large difference in the energy gap between the triplet and quintet electronic states. In presence of cyclohexane as substrate, [(bispidine)Fe-IV=O(Cl)](+) oxidizes cyclohexane with a rate that is approx. 25 times faster than the self-decay of the oxidant, and selectively leads to chlorocyclohexane in moderate yield. The S = 1 electronic ground state of [(bispidine)Fe-IV=O(Cl)](+) and a relatively low gap to the S = 2 state (approx. 6 kJ mol(-1)vs. approx. 75 kJ mol(-1) for [(bispidine)Fe-IV=O(MeCN)](2+)) is also predicted by DLPNO-CCSD(T) quantum-chemical calculations. The method used was benchmarked with a set of six ferryl complexes with experimentally known electronic ground states.
机译:通过实验和高级DLPNO-CCSD(T)量子化学计算显示铁(IV)氧化亚络合物[(Bispidine)Fe-IV = O(CL)](+),以极为短暂和非常反应性中间旋转(S = 1)种。在低至-90摄氏度的温度下,它衰减了半衰期约为。两分钟,这就是为什么到目前为止,它仍然未被发现,为什么陷阱是极难的,并且完全表征这种有趣和极其有效的氧化剂。 [(Bispidine)Fe-IV = O(Cl)](+)和[(Bispidine)Fe-IV = O(MECN)](2+)(至少两个数量级)之间的反应性差异很大氧化铁(IV)配合物都具有非常相似的结构,并且S = 1电子接地状态,可能是由于三重态和Quintet电子状态之间的能隙的差异很大。在环己烷存在作为底物中,[(Bispidine)Fe-IV = O(Cl)](+)将环己烷氧化为约。比氧化剂的自衰减快25倍,并选择性地以适度的产率导致氯氰酸己烷。 [(Bispidine)Fe-IV = O(CL)](+)的S = 1电子接地状态和S = 2状态的相对低的间隙(约6kJMol(-1)Vs。约75对于[(Bispidine)Fe-IV = O(MECN)](2+)的KJMOL(-1)也通过DLPNO-CCSD(T)量子化学计算来预测。使用的方法用一组具有实验已知的电子地面态的六个六个渡轮复合物进行了基准测试。

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