首页> 外文期刊>International journal of hydrogen energy >Copper nanoparticles immobilized on a hybrid chitosan derivative-graphite substrate as a novel electrocatalyst for the oxygen reduction reaction
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Copper nanoparticles immobilized on a hybrid chitosan derivative-graphite substrate as a novel electrocatalyst for the oxygen reduction reaction

机译:固定在杂化壳聚糖衍生物-石墨基质上的铜纳米颗粒作为新型的氧还原反应电催化剂

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In this study, abundant and cheap graphite support (G) was modified with chitosan (Chit) and amine groups to obtain N-Chit-G and subsequently decorated with copper nanoparticles (CuNPs). The nanocomposites thus obtained were characterized at different stages of the synthesis using various techniques such as transmission electron microscopy, X-ray photoelectron spectroscopy, Brunauer-Emmett-Teller, carbon-hydrogen nitrogen sulfur analyzer, cyclic voltammetry, and electrochemical impedance spectroscopy. Results showed that CuNPs had been uniformly and finely decorated on the N-Chit-G support, in which copper was in the predominant form of Cu(I). The Randles-Sevcik equation revealed the high active surface area of Cu N-Chit-G compared to the remaining composites obtained. Oxygen reduction reaction (ORR) at Cu@N-Chit-G was evaluated by linear sweep voltammetry using a rotating disk electrode in a KOH solution (0.1 mol L-1) saturated with O-2 and O-2 plus MeOH (1.0 mol L-1) to find the good electrocatalytic capability of Cu@N-Chit-G for ORR with a small onset potential of 0.74 V (vs. RHE). A KOH solution, saturated with MeOH (1.0 mol L-1), revealed good 10000 s durability of Cu@N-Chit-G electrocatalyst with a slow drop in the current (91%). Finally, ORR kinetic investigations were conducted using the Koutecky-Levich (K-L) plot to find the ORR progress through a 4e(-) pathway. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,大量廉价的石墨载体(G)被壳聚糖(Chit)和胺基改性,得到N-Chit-G,随后用铜纳米粒子(CuNPs)装饰。使用各种技术,例如透射电子显微镜,X射线光电子能谱,Brunauer-Emmett-Teller,碳氢氮硫分析仪,循环伏安法和电化学阻抗谱,在合成的不同阶段对由此获得的纳米复合材料进行了表征。结果表明,CuNPs在N-Chit-G载体上均匀且精细地装饰,其中铜是以Cu(I)的主要形式存在。与获得的其余复合材料相比,Randles-Sevcik方程显示了Cu N-Chit-G的高活性表面积。在使用O-2和O-2以及MeOH(1.0 mol)饱和的KOH溶液(0.1 mol L-1)中,使用旋转圆盘电极通过线性扫描伏安法评估Cu @ N-Chit-G处的氧还原反应(ORR) L-1),以发现Cu @ N-Chit-G对ORR具有良好的电催化能力,且起始电位仅为0.74 V(vs. RHE)。用MeOH(1.0 mol L-1)饱和的KOH溶液显示Cu @ N-Chit-G电催化剂具有10000 s的良好耐久性,电流缓慢下降(91%)。最后,使用Koutecky-Levich(K-L)图进行了ORR动力学研究,以发现通过4e(-)途径的ORR进展。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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