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首页> 外文期刊>The journal of physics and chemistry of solids >Comparative study of the electrochemical properties of mesoporous 1-D and 3-D nano- structured rhombohedral nickel sulfide in alkaline electrolytes
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Comparative study of the electrochemical properties of mesoporous 1-D and 3-D nano- structured rhombohedral nickel sulfide in alkaline electrolytes

机译:碱性电解质中介孔1-D和3-D纳米结构菱形硫醚电化学性质的对比研究

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摘要

Mesoporous beta-NiS (nickel sulfide) has been synthesized by a hydrothermal route using thiourea as a sulfur source. FESEM and TEM images confirm the formation of one dimension (1-D) or three dimension (3-D) nanostructures. 1-D or 3-D nanostructures were formed by varying the concentration of thiourea. The growth mechanisms for formation of 1-D and 3-D nano-structures have been studied in detail. No other phases of nickel sulfide were detected in the XRD and XPS spectra. Comparative studies of the electrochemical behaviour of the synthesized beta-NiS have been performed in various alkaline electrolytes (KOH, LiOH, and NaOH). beta-NiS showed superior electrochemical performance in aqueous LiOH electrolyte than aqueous KOH and NaOH electro lye. 1-D growth of beta-NiS nano-rods showed to a maximum areal capacitance of 3.66 F cm(-2) and excellent cyclic stability of 88% over 1000 cycles in aqueous LiOH electrolyte. The1-D growth provides effective pathways for ion diffusion and improve the electron-transfer rate, promoting faradaic reaction in the charge-storage process. Impedance parameters were calculated from Nyquist plot, where beta-NiS1-D nano-rods showed the lowest charge-transfer resistance of 1.29 Omega and a high Warburg impedance of 398.94 Omega.s(-1/2). The measured parameter of the synthesized beta-NiS nanostructures indicates that these are the promising electrode material for electrochemical devices.
机译:使用硫脲作为硫源的水热途径合成了中孔β-NIS(硫化镍)。 FeSEM和TEM图像确认形成一个尺寸(1-D)或三维(3-D)纳米结构。通过改变硫脲的浓度来形成1-D或3-D纳米结构。已经详细研究了形成1-D和3-D纳米结构的生长机制。在XRD和XPS光谱中检测到硫化镍的其他相。已经在各种碱性电解质(KOH,LiOH和NaOH)中进行了合成β-NIS的电化学行为的比较研究。 β-NIS在LiOH电解质水溶液中表现出优异的电化学性能,而不是KOH和NaOH电磁碱液。 β-NIS纳米棒的1-D生长显示为3.66fcm(-2)的最大面积电容,并且在LiOH电解质水溶液中优异的循环稳定性为88%超过1000次循环。 1-D生长提供了用于离子扩散的有效途径,提高电子传输速率,促进在电荷储存过程中的游览反应。阻抗参数由奈奎斯特图计算,其中β-NIS1-D纳米棒显示出1.29ω的最低电荷 - 转移电阻和398.94Ω(-1/2)的高沃堡阻抗。合成的β-NIS纳米结构的测量参数表明这些是用于电化学装置的有希望的电极材料。

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