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Synthesis, Structure and Electrochemical Behavior of a Supramolecular Compound

机译:超分子化合物的合成,结构和电化学行为

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A supramolecular compound, Co(C5H4NCOO)2(H2O)2·2H2O was hydrothermally synthesized and characterized by elemental analysis, infrared spectra, UV-vis spectra. Elemental analysis result shows that the mass percent of C is 38.36%; H, 4.32% and N, 7.50%. Infrared spectra show that the main absorption peak is near 3396 cm-1, which is attributed to the O-H stretching vibration absorption. Also there are some absorption peaks at 1599, 1551, 1420, 1384 cm-1, which are attributed to the pyridine vibration absorption. UV spectrum for the compound shows strong absorption peaks at 203 and 259 nm, which are similar to isoniazid. X-ray diffraction data indicate that the compound is monoclinic, P21 / c space group. The cyclic voltammograms indicate that the compound decreases the rate of oxygen reduction reaction (ORR) and induces the ORR more difficult in aqueous solutions. The electrochemical behavior suggests that the compound possesses the potential application for corrosion in aqueous environment.
机译:水热合成了超分子化合物Co(C5H4NCOO)2(H2O)2·2H2O,并通过元素分析,红外光谱,UV-vis光谱进行了表征。元素分析结果表明,C的质量百分比为38.36%。 H为4.32%,N为7.50%。红外光谱显示主吸收峰在3396 cm-1附近,这归因于O-H拉伸振动吸收。在1599、1551、1420、1384 cm-1处也有一些吸收峰,这归因于吡啶的振动吸收。该化合物的紫外光谱在203和259 nm处显示强吸收峰,与异烟肼相似。 X射线衍射数据表明该化合物为单斜晶系,P21 / c空间群。循环伏安图表明该化合物降低了氧还原反应(ORR)的速率,并在水溶液中诱导了ORR更加困难。电化学行为表明该化合物具有在水环境中腐蚀的潜在应用。

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