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Enhancing the reactivity of nickel(ii) in hydrogen evolution reactions (HERs) by β-hydrogenation of porphyrinoid ligands

机译:通过卟啉类配体的β-氢化提高镍在放氢反应(HERs)中的反应性

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摘要

Fine-tuning of the porphyrin β-periphery is important for naturally occurring metal tetrapyrroles to exert diverse biological roles. Here we describe how this approach is also applied to design molecular catalysts, as exemplified by Ni(ii) porphyrinoids catalyzing the hydrogen evolution reaction (HER). We found that β-hydrogenation of porphyrin remarkably enhances the electrocatalytic HER reactivity (turnover frequencies of 6287 vs. 265 s–1 for Ni(ii) chlorin (Ni->2) and porphyrin (Ni->1), and of 1737 vs. 342 s–1 for Ni(ii) hydroporpholactone (Ni->4) and porpholactone (Ni->3), respectively) using trifluoroacetic acid (TFA) as the proton source. DFT calculations suggested that after two-electron reduction, β-hydrogenation renders more electron density located on the Ni center and thus prefers to generate a highly reactive nickel hydride intermediate. To demonstrate this, decamethylcobaltocene Co(Cp*)2 was used as a chemical reductant. [Ni->2]2– reacts ca. 30 times faster than [Ni->1]2– with TFA, which is in line with the electrocatalysis and computational results. Thus, such subtle structural changes inducing the distinctive reactivity of Ni(ii) not only test the fundamental understanding of natural Ni tetrapyrroles but also provide a valuable clue to design metal porphyrinoid catalysts.
机译:卟啉β外围的微调对于天然存在的金属四吡咯发挥多种生物学作用至关重要。在这里,我们描述了如何将该方法也应用于设计分子催化剂,例如Ni(ii)卟啉类化合物催化氢释放反应(HER)。我们发现,卟啉的β-氢化显着增强了电催化HER反应性(Ni(ii)二氢卟酚(Ni- > 2 )的转换频率为6287 vs. 265 s –1 和卟啉(Ni- > 1 ),以及Ni(ii)氢卟啉内酯(Ni- > 4 )的1737对342 s –1 和使用三氟乙酸(TFA)作为质子源的二甲内酯(Ni- > 3 )。 DFT计算表明,在双电子还原后,β加氢使位于Ni中心的电子密度更高,因此倾向于生成高反应性的氢化镍中间体。为了证明这一点,将十甲基钴茂Co(Cp *)2用作化学还原剂。 [Ni- > 2 ] 2 – 发生反应。使用TFA的[Ni- > 1 ] 2 – 快30倍,这与电催化和计算结果相符。因此,这种引起Ni(ii)独特反应性的细微结构变化,不仅测试了对天然四吡咯镍的基本了解,而且为设计金属卟啉催化剂提供了有价值的线索。

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