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The Effects of Coordinated Molecules of Two Gly-Schiff Base Copper Complexes on Their Oxygen Reduction Reaction Performance

机译:两种甘道脑铜复合物协调分子对其氧还原反应性能的影响

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摘要

In this study, two simple Schiff base copper complexes [Cu(H2O)2(HL)]·2H2O (Complex 1) (H3L = 2-OH-4-(OH)-C6H2CH=NCH2CO2H) and [Cu(py)2(HL)] (Complex 2) (Py = pyridine) were initially achieved and authenticated by single-crystal X-ray structure analyses (SXRD), powder X-ray diffraction analyses (PXRD), FT-IR spectroscopy, and elemental analyses. The SXRD reveals that the Cu2+ center in Complex 1 exhibited a distorted square pyramidal geometry, which is constructed based on phenolate oxygen, water molecules, carboxylate oxygen, and imine nitrogen from a deprotonated H3L ligand in an NO4 fashion. The Cu2+ atom in Complex 2 had distorted square pyramidal geometry, and was coordinated with two pyridine molecules and one Gly-Schiff base ligand, exhibiting an N3O2 binding set. Additionally, the free water molecules in Complex 1 linked independent copper complexes by intermolecular hydrogen bond to form a 2D framework. However, the one-dimensional chain supramolecular structure of Complex 2 was formed by the intermolecular O–H…O hydrogen bonds. The oxygen reduction performance of the two complexes was analyzed by cyclic voltammetry (CV) and the rotating disk electrode (RDE) method. Both complexes could catalyze the conversion of oxygen to water through a predominant four-electron pathway, and the Cu–NxOy moieties might be the functional moieties for the catalytic activity. The catalytic pathways and underlying mechanisms are also discussed in detail, from which the structure–activity relationship of the complexes was obtained.
机译:在这项研究中,两个简单的席夫碱铜络合物[铜(H2O)2(HL)]·2H 2 O(复合物1)(H3L = 2-OH-4-(OH)-C6H2CH = NCH2CO2H)和[铜(PY)2 (HL)](络合物2)(PY =吡啶)最初是由单晶X射线结构分析(SXRD),粉末X射线衍射分析(PXRD),FT-IR光谱,以及元素分析来实现和验证。对SXRD显示,在配合物1的Cu2 +的中心呈现的变形四方锥几何形状,这是基于酚氧,水分子,羧酸酯氧和亚胺氮从一个去质子化的配体H3L在NO4方式构造。在配合物2的Cu2 +的原子歪曲四方锥的几何形状,并具有两个吡啶分子和一个甘氨酸 - 席夫碱配体配位,表现出N 3 O 2结合集。此外,在配合物1的自由水分子通过分子间氢键连接的独立铜络合物以形成2D框架。然而,配合物2的一维链的超分子结构通过分子间的O - H ... O氢键形成。两种复合物的氧还原性能通过循环伏安法(CV)和旋转圆盘电极(RDE)方法进行分析。两种复合可以通过一个主导四电子途径催化氧和水的转化率,与Cu-NxOy部分可能是催化活性的官能部分。催化途径和底层机制也详细地说,从中获得的复合物的结构 - 活性关系进行讨论。

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