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Electrochemical hydrogen storage in EPD made porous Ni-CNT electrode

机译:EPD制成的多孔Ni-CNT电极中的电化学储氢

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The hydrogen storage capacity of multi-wall carbon nanotubes (MWCNTs), purified and doped with nano-Nickel particles, is investigated using chronopotentiometry. Several factors such as current magnitude, effect of the number of charge and discharge cycles as well as annealing effect are studied. The X-ray Diffraction (XRD) results indicate that pickling method removes most of the catalysts. Carbon nanotubes (CNTs) are put on nickel foam of nano scale porosities by Electrophoretic deposition (EPD) method. Scanning Electron Microscopy (SEM) technique shows the surface of nickel foam plate. Deposition of nickel particles on CNTs is conducted by electroplating. In order to measure the hydrogen storage capacity, electrodes of CNT and Ni-CNT are used as working electrodes in the three-electrode system. Different results of charge and discharge for various currents in different electrodes show that Ni-CNTs have a maximum discharge capacity (3520 mAh/gr) compared to other electrodes in the optimum current of 2 mA. By increasing the number of cycles in constant current, the capacity is increased to reach a constant amount. Annealing operation leads to more strength of CNTs on the surface. (C) 2015 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用计时电位法研究了纯化和掺杂纳米镍颗粒的多壁碳纳米管(MWCNT)的储氢能力。研究了诸如电流大小,充电和放电循环次数的影响以及退火效应等几个因素。 X射线衍射(XRD)结果表明,酸洗方法除去了大多数催化剂。通过电泳沉积(EPD)方法将碳纳米管(CNTs)置于纳米级孔隙率的镍泡沫上。扫描电子显微镜(SEM)技术显示了泡沫镍板的表面。通过电镀在CNT上沉积镍颗粒。为了测量储氢容量,在三电极系统中,将CNT和Ni-CNT的电极用作工作电极。不同电极上各种电流的充放电结果不同,表明在2 mA的最佳电流下,Ni-CNT与其他电极相比具有最大放电容量(3520 mAh / gr)。通过增加恒定电流下的循环次数,可以增加容量以达到恒定量。退火操作导致表面上CNT的强度更高。 (C)2015 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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