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Two-State Reactivity in Iron-Catalyzed Alkene Isomerization Confers σ‑Base Resistance

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Figshare2020-08-12 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Two-State_Reactivity_in_Iron-Catalyzed_Alkene_Isomerization_Confers_Base_Resistance/12867335
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A low-coordinate, high spin (S = 3/2) organometallic iron­(I) complex is a catalyst for the isomerization of alkenes. A combination of experimental and computational mechanistic studies supports a mechanism in which alkene isomerization occurs by the allyl mechanism. Importantly, while substrate binding occurs on the S = 3/2 surface, oxidative addition to an η1-allyl intermediate only occurs on the S = 1/2 surface. Since this spin state change is only possible when the alkene substrate is bound, the catalyst has high immunity to typical σ-base poisons due to the antibonding interactions of the high spin state.
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2020-08-12
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