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探究悬垂于钴配合物二级配位球上的胺基对电催化析氢反应的影响。

Exploring the effect of a pendent amine group poised over the secondary coordination sphere of a cobalt complex on the electrocatalytic hydrogen evolution reaction.

作者信息

Ali Afsar, Verma Rajaneesh Kumar, Das Avijit, Paria Sayantan

机构信息

Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

Dalton Trans. 2024 May 14;53(19):8289-8297. doi: 10.1039/d4dt00009a.

DOI:10.1039/d4dt00009a
PMID:38660950
Abstract

A Co complex (2) of a bispyridine-dioxime ligand (HL) containing a tertiary amine group in the proximity of the Co center is synthesized and characterized. One of the oxime protons of the ligand is deprotonated, and the amine group remains protonated in the solid-state structure of the Co complex (2a). The acid-base properties of 2 showed p values of 5.9, 8.4, and 9.6, which are assigned to the dissociation of two consecutive oxime protons and amine protons, respectively. The electrocatalytic proton reduction of 2 was investigated in an aqueous phosphate buffer solution (PBS), revealing a catalytic hydrogen evolution reaction (HER) at an of -1.01 V the SHE, with an overpotential of 673 mV and a value of 2.6 × 10 s at pH 7. For comparison, the HER of the Co complex (1) lacking the -amine group at the secondary sphere was investigated in PBS, which showed a of 1.3 × 10 s and an overpotential of 577 mV. At pH 4, however, 2 revealed a ∼3 times higher value than 1, which suggests that the protonated amine group likely works as a proton relay site. Notably, no significant change in the reaction rate was observed at different pH values for 1, implying that oxime protons may not be involved in the intramolecular proton-coupled electron transfer reaction in the HER. The values for Co complexes at pH 7.0 are significantly higher than those of the [Co(dmgH)(pyridine)(Cl)] complex, implying that the primary coordination sphere around 1 or 2 enhances the HER and offers better catalyst stability in acidic buffer solutions.

摘要

合成并表征了一种钴配合物(2),其双吡啶二肟配体(HL)在钴中心附近含有叔胺基团。配体的一个肟质子去质子化,在钴配合物(2a)的固态结构中胺基团保持质子化。2的酸碱性质显示p值分别为5.9、8.4和9.6,分别归因于两个连续肟质子和胺质子的解离。在磷酸盐缓冲水溶液(PBS)中研究了2的电催化质子还原,发现在相对于标准氢电极(SHE)为-1.01 V时发生催化析氢反应(HER),在pH 7时过电位为673 mV,周转频率(TOF)值为2.6×10⁻³ s⁻¹。作为比较,在PBS中研究了在二级配位层中缺乏胺基团的钴配合物(1)的HER,其显示周转频率为1.3×10⁻³ s⁻¹,过电位为577 mV。然而,在pH 4时,2的周转频率值比1高约3倍,这表明质子化的胺基团可能起到质子中继位点的作用。值得注意的是,对于1,在不同pH值下未观察到反应速率有显著变化,这意味着肟质子可能不参与HER中的分子内质子耦合电子转移反应。在pH 7.0时钴配合物的周转频率值显著高于[Co(dmgH)(吡啶)(Cl)]配合物,这意味着1或2周围的一级配位层增强了HER,并在酸性缓冲溶液中提供了更好的催化剂稳定性。

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