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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Stabilization, fragmentation and rearrangement reactions in low-energy electron interaction with tetrafluoro-para-benzoquinone: a combined theoretical and experimental study
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Stabilization, fragmentation and rearrangement reactions in low-energy electron interaction with tetrafluoro-para-benzoquinone: a combined theoretical and experimental study

机译:低能电子与四氟对苯醌的相互作用中的稳定化,断裂和重排反应:理论和实验相结合的研究

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Quirtones are a class of organic compounds whose extraordinary electron transfer properties are fundamental in ubiquitous processes such as the ATP production and the photosynthesis. Here, we report a combined theoretical and experimental study to shed some light on low-energy electron interaction with tetrafluoro-para-benzoquinone (TFQ) and para-benzoquinone (p-BQ). Similar to it's native counterpart; p-BQ, TFQ forms a metastable molecular anion at unusually high incident energies in electron attachment under single collision conditions. Transition state calculations are used for both p-BQ and TFQ to explore possible stabilization of the molecular anion through isomerization reactions, and stabilization through intramolecular vibrational energy redistribution (IVR) is discussed in relation to the electronic structure of these compounds. We also report exceptionally extensive and complex rearrangement reactions in dissociative electron attachment to TFQ and discuss possible reaction paths based on thermochemical threshold calculations. The observed fragmentation reactions can at large be described by two dissociation series, i.e., the formation of [TFQ-CO-nF]~ (n = 0, 1, 2 or 3) and [TFQ-2CO-nF]~-(n = 0, 1, 2, 3 or 4). In the latter series we observe, at incident electron energy as low as ~0.5 eV, the excision of two CO molecules followed by recombination of the remaining moiety to form an anionic carbon chain with two terminal CF2 groups. To our knowledge such excision of two non-adjacent carbon atoms and recombination of the remaining moiety have not been observed before in low energy electron attachment.
机译:Quirtones是一类有机化合物,其非凡的电子转移特性在诸如ATP产生和光合作用等普遍过程中至关重要。在这里,我们报告了一项理论和实验相结合的研究,以阐明与四氟对苯醌(TFQ)和对苯醌(p-BQ)的低能电子相互作用。类似于它的本机对应物; p-BQ,TFQ在单个碰撞条件下在电子附着中异常高的入射能量下会形成亚稳态分子阴离子。对p-BQ和TFQ均使用过渡态计算,以探索通过异构化反应可能实现的分子阴离子的稳定化,并讨论了与这些化合物的电子结构有关的通过分子内振动能重新分布(IVR)进行的稳定化。我们还报告了在离解电子附着到TFQ上异常广泛和复杂的重排反应,并讨论了基于热化学阈值计算的可能反应路径。观察到的片段化反应可以用两个解离级数来描述,即[TFQ-CO-nF]〜(n = 0、1、2或3)和[TFQ-2CO-nF]〜-(n = 0、1、2、3或4)。在后一个系列中,我们观察到在低至约0.5 eV的入射电子能量下,两个CO分子被切除,其余部分重组形成带有两个CF2末端的阴离子碳链。据我们所知,以前在低能电子连接中还没有观察到两个非相邻碳原子的切除和剩余部分的重组。

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