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首页> 外文期刊>Turkish journal of chemistry >Electrochemical investigation of 2-[8-hydroxyquinoline-5-yl)azo]benzo[$c$]cinnoline on a platinum electrode in dimethysulfoxide
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Electrochemical investigation of 2-[8-hydroxyquinoline-5-yl)azo]benzo[$c$]cinnoline on a platinum electrode in dimethysulfoxide

机译:二甲基亚砜中铂电极上2- [8-羟基喹啉-5-基)偶氮]苯并[$ c $] cinnoline的电化学研究

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2-[8-hydroxyquinoline-5-yl)azo]benzo[c]cinnoline was synthesized for the first time and shown to possess electrochromic characteristic, i.e. changing color during the forward and back electrolysis at --1.35 V and 0.00 V, respectively, in DMSO medium. Therefore, the electrochemical investigation of this compound appears to be worthwhile.The electrochemical reduction of 2-[8-hydroxyquinoline-5-yl)azo]benzo[c]cinnoline was investigated by cyclic voltammetry, controlled potential electrolysis, and chronoamperometry techniques in the presence of 0.10 mol L$^{-1}$ tetrabutylammonium tetrafluoroborate in dimethyl sulfoxide at platinum electrode. 2-[8-Hydroxyquinoline-5-yl)azo]benzo[c] cinnoline displays three sharp cathodic peaks and three anodic peaks in the cyclic voltammogram. The diffusion coefficients and the number of electrons transferred were calculated by using an ultramicroelectrode and platinum electrode. The number of transferred electrons was found to be one for each peak. The standard heterogeneous rate constant for reduction was calculated by the Klingler--Kochi technique. The electrochemical reduction mechanism of 2-[8-hydroxyquinoline-5-yl)azo]benzo[c]cinnoline was also investigated by using various electrochemical techniques, such as bulk electrolysis, and spectroscopic methods, like electron spin resonance spectroscopy. Bulk electrolysis results also provided evidence for each peak belonging to reduction of one electron, two of which were confirmed by electron spin resonance spectroscopy. This new chemical is found to be an electrochromic substance.
机译:首次合成2- [8-羟基喹啉-5-基)偶氮]苯并[c] cinnoline,并显示其具有电致变色特性,即在-1.35 V和0.00 V的正向和反向电解过程中分别改变颜色,在DMSO介质中。因此,该化合物的电化学研究似乎是值得的。通过循环伏安法,控制电位电解法和计时安培技术研究了2- [8-羟基喹啉-5-基)偶氮]苯并[c] cinnoline的电化学还原。在铂电极上存在于二甲亚砜中的0.10 mol L $ ^ {-1} $四氟硼酸四丁基铵。 2- [8-羟基喹啉-5-基]偶氮]苯并[c]肉桂酸在循环伏安图中显示三个尖锐的阴极峰和三个阳极峰。通过使用超微电极和铂电极来计算扩散系数和转移的电子数。发现每个峰的转移电子数为一个。通过Klingler-Kochi技术计算减少的标准异质速率常数。还使用各种电化学技术(例如本体电解)和光谱法(例如电子自旋共振光谱法)研究了2- [8-羟基喹啉-5-基)偶氮]苯并[c]肉桂酸的电化学还原机理。本体电解的结果也为属于一个电子还原的每个峰提供了证据,其中两个通过电子自旋共振光谱法得到证实。发现这种新化学物质是电致变色物质。

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