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Directing isomerization reactions of cumulenes with electric fields

机译:用电场指导对苯二酚的异构化反应

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摘要

Electric fields have been proposed as having a distinct ability to catalyze chemical reactions through the stabilization of polar or ionic intermediate transition states. Although field-assisted catalysis is being researched, the ability to catalyze reactions in solution using electric fields remains elusive and the understanding of mechanisms of such catalysis is sparse. Here we show that an electric field can catalyze the cis-to-trans isomerization of [3]cumulene derivatives in solution, in a scanning tunneling microscope. We further show that the external electric field can alter the thermodynamics inhibiting the trans-to-cis reverse reaction, endowing the selectivity toward trans isomer. Using density functional theory-based calculations, we find that the applied electric field promotes a zwitterionic resonance form, which ensures a lower energy transition state for the isomerization reaction. The field also stabilizes the trans form, relative to the cis, dictating the cis/trans thermodynamics, driving the equilibrium product exclusively toward the trans.
机译:已经提出电场具有通过稳定极性或离子中间过渡态来催化化学反应的独特能力。尽管正在研究场辅助催化,但是使用电场催化溶液中的反应的能力仍然难以捉摸,并且对这种催化机理的理解还很少。在这里,我们显示在扫描隧道显微镜中,电场可以催化溶液中[3]异丙苯衍生物的顺式-反式异构化。我们进一步表明,外部电场可以改变热力学,从而抑制反式-顺式逆反应,从而赋予了对反式异构体的选择性。使用基于密度泛函理论的计算,我们发现施加的电场促进了两性离子共振形式,从而确保了异构化反应的较低能量跃迁状态。该场还相对于顺式稳定了反式形式,指示了顺式/反式热力学,将平衡产物专门推向反式。

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