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Intensified electrochemical hydrogen storage capacity of multi-walled carbon nanotubes supported with Ni nanoparticles

机译:加强用Ni纳米粒子支撑的多壁碳纳米管的电化学储氢容量

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The electrochemical hydrogen storage properties of Ni-supported multi-walled carbon nanotube (Ni/MWCNT) electrodes were investigated using charge/discharge (C&D) and cyclic voltammetry (CV) techniques. Nickel NPs were deposited on the MWCNT surface, which was first chemically oxidized by H2SO4 and HNO3 (3:1, v/v). Hydrogen storage was carried out by using the Ni/MWCNT electrode as the working electrode in the electrochemical cell. A set of various current densities were applied to the cell to produce (C&D) cycles, and it became optimum corresponding to 1.5 mA current. According to the electrochemical test results, the highest electrochemical discharge capacity of 1625 mAh g(-1) was obtained for the electrode with ratio of 4:1 (MWCNTs to Ni) in the initial cycle, which corresponded to 6.07 wt% H-2. The storage capacity was increased and reached to 4909 mAh g(-1) (18.34 wt% H-2) after 20 cycles, and the electrode maintained the specific capacity as cycling continued. Thus, the Ni/MWCNT electrode displays an excellent cycle stability and a high capacity reversibility. CV measurements also showed that the electrochemical adsorption and desorption amount of hydrogen was increased by Ni loading onto the CNTs and indicated that the electrochemical hydrogen adsorption of the electrode has an activated period.
机译:使用充电/放电(C&D)和循环伏安法(CV)技术研究了Ni负载的多壁碳纳米管(Ni / MWCNT)电极的电化学储氢性能。镍NPS沉积在MWCNT表面上,首先通过H 2 SO 4和HNO 3(3:1,V / V)化学氧化。通过使用Ni / MWCNT电极作为电化学电池中的工作电极进行氢气储存。将一组各种电流密度施加到细胞中以产生(C&D)循环,并且变得最佳对应于1.5 mA电流。根据电化学测试结果,在初始循环中,在初始循环中为具有4:1(MWCNTs至Ni)比的电极的最高电化学放电容量,其对应于6.07wt%H-2 。在20个循环后,储存容量增加并达到4909mAhg(-1)(18.34wt%H-2),并且电极保持循环的特定容量。因此,Ni / MWCNT电极显示出优异的循环稳定性和高容量可逆性。 CV测量还表明,通过Ni负载在CNT上增加了氢的电化学吸附和解吸量,并表明电极吸附电极的吸附活性。

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