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The effect of the catalyst on the synthesis of 2,2'-dichlorohydrazobenzene during the electrochemical reduction of o-chloronitrobenzene

机译:催化剂对邻氯硝基苯电化学还原反应中2,2'-二氯hydr苯合成的影响

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摘要

In this paper, 2,2'-dichlorohydrazobenzene was synthesized by the electrochemical reduction of o-chloronitrobenzene using the ion-exchange membrane method. The effects of different catalysts (litharge, lead tetroxide, and lead nitrate) on the synthesis were investigated. The influence of different catalyst loading approaches on the electrochemical reduction were also examined. The structure and surface morphology of the catalysts were characterized by X-ray diffraction and scanning electron microscopy. Catalyst activity was examined by dynamic potential analyses and cyclic voltammetry. Litharge was found to induce the greatest improvement in the electrolysis reaction rate and also decreases the reaction time. Coating the catalyst on the cathode helps enhance the product yield. The possible reaction mechanism was studied, and the catalyst was found to play a key role in transforming raw substances into intermediates. However, there is little effect on intermediate product transformation into the desired product.
机译:本文采用离子交换膜方法通过电化学还原邻氯硝基苯合成了2,2'-二氯chloro苯。研究了不同催化剂(锂,四氧化铅和硝酸铅)对合成的影响。还研究了不同催化剂加载方式对电化学还原的影响。用X射线衍射和扫描电子显微镜对催化剂的结构和表面形貌进行了表征。通过动态电势分析和循环伏安法检查催化剂活性。发现Litharge引起电解反应速率的最大改善,并且还减少了反应时间。将催化剂涂覆在阴极上有助于提高产物产率。研究了可能的反应机理,发现该催化剂在将原料转化为中间体方面起着关键作用。但是,对中间产物转化为所需产物的影响很小。

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