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PANI-g-C3N4 grafted on cobalt acetate as an efficient precursor for synthesis of N-doped carbon contains cobalt composite: A versatile catalyst for reduction of nitro compounds

机译:乙酸钴的Pani-G-C3N4作为合成N掺杂碳的高效前体含有钴复合材料:用于还原硝基化合物的通用催化剂

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摘要

In this study, a novel nano catalyst consisted of Co oxide particles incorporated in N-doped porous carbon, named Co3O4@N-C-600, was synthesized in the one-step pyrolysis of polyaniline-graphitic carbon nitride composite grafted cobalt acetate at 600 degrees C. The resulting Co3O4@N-C-600 catalyst was characterized using different identification methods. In addition, specific surface area and the size of the porous carbon cavities were measured using Brunauer-Emmett-Teller (BET) analyzer. The catalytic performance of this novel nano-catalyst was examined for reduction of aromatic and aliphatic nitro-compounds using water as green solvent at 75 degrees C. Also the as prepared carbon catalyst resulted corresponding amine compounds in high yields and short reaction times. After the end of the reaction, the nano catalyst was easily separated using centrifuge and the recycle studies showed that it reused in five continuous runs in the model reaction without appreciable loss of its catalytic activity.
机译:在该研究中,由掺入N掺杂CO3O4 @ NC-600的CO氧化物颗粒组成的新型纳米催化剂,该纳米催化剂由名为CO3O4 @ NC-600的二氯胺 - 石墨碳氮化物复合移植的醋酸钴的一步热解合成,在600℃下合成。使用不同的鉴定方法表征得到的CO 3 O 4 @ NC-600催化剂。另外,使用Brunauer-Emmett-Teller(Bet)分析仪测量比表面积和多孔碳腔的尺寸。检查该新型纳米催化剂的催化性能,用于在75℃下用水作为绿色溶剂还原芳族和脂族硝基 - 化合物。作为制备的碳催化剂也得到相应的胺化合物,高产率和短反应时间。在反应结束后,使用离心机容易分离纳米催化剂,再循环研究表明它在模型反应中的五次连续运行中重复使用,而不明显丧失其催化活性。

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