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Nitrogen Doped Carbon Nanomaterial as Electrocatalyst for Oxygen Reduction Reaction in Acidic Media: To use in Electro-Fenton

机译:氮掺杂碳纳米材料作为酸性介质还原反应的电催化剂:用于电芬顿

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摘要

The doped heteroatom in carbon matrices plays a crucial role in the electro-Fenton process.Here,we investigated the electrocatalytic activities of the acetonitrile –derived(by flame synthesis)nitrogen-doped carbon nanomaterials for the twoelectron oxygen reduction reaction(ORR)in the electro-Fenton process,focusing on the peroxide generation and degradation of chlorophenoxy acid herbicides from contaminated water.Besides,we studied the anodic oxidation of chlorophenoxy acid herbicides from the water,and comparatively electrochemically generated OH radicals yield the higher degradation efficiency.To study the fundamental property,the linear sweep voltammetry studies of nitrogen-doped carbon cathode material exhibits the excellent electrocatalytic activity towards 2 electron transfer oxygen reduction reaction in acidic conditions and successfully applied for the degradation of herbicides This work provides a feasible synthetic approach for scalable production of acetonitrile derived high-performance carbonbased ORR catalyst.The degradation results point out that,nitrogen-doped carbon nanomaterial is one of the promising cathode materials for the degradation of organic pollutants by electro-Fenton process.
机译:碳基质中的掺杂杂种在电芬顿过程中起着至关重要的作用。电芬顿工艺的重点是从污染的水中氯磷酸酸除草剂的降解和降解。Besides,我们研究了从水中研究了氯磷酸酸除草剂的阳极氧化,从而从水中研究了相对较高的降解效率。基本特性,氮掺杂的碳阴极材料的线性扫描伏安法研究表现出极好的电催化活性,对2电子转移氧还原反应在酸性条件下,并成功地应用了除草剂的降解,该工作为可行的合成方法提供了可行的合成方法。得分高 - 绩效碳基于ORR催化剂。降解结果指出,氮掺杂的碳纳米材料是通过Electro-Fenton工艺降解有机污染物的有希望的阴极材料之一。

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