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Decorating carbon nanotubes with Ni particles using an electroless deposition technique for hydrogen storage applications

机译:使用化学沉积技术用Ni粒子修饰碳纳米管用于氢存储应用

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摘要

A facile and low-cost electroless deposition technique is utilized to decorate multi-walled carbon nanotubes (CNTs) with Ni. The obtained composites are attempted to use as hydrogen storage materials, whose performance is evaluated with a high-pressure microbalance. Effects of the concentration of plating solution, deposition time, and reaction temperature on the loading amount, particle size, morphology, and distribution density of Ni are studied using a transmission electron microscope. With proper deposition parameters, highly dispersed Ni nanoparticles with a uniform diameter can be fabricated on CNTs, causing a notable hydrogen spillover reaction on the composite. The optimum hydrogen storage capacity of the prepared Ni-decorated CNTs with a average diameter of 5 nm, measured at 6.89 MPa and 25 ℃, is 1.02 wt%, which is almost three times higher than that (0.35 wt%) of pristine CNTs.
机译:利用一种廉价的低成本化学沉积技术来用Ni装饰多壁碳纳米管(CNT)。尝试将获得的复合材料用作储氢材料,并通过高压微量天平评估其性能。使用透射电子显微镜研究了镀液浓度,沉积时间和反应温度对Ni的负载量,粒径,形貌和分布密度的影响。通过适当的沉积参数,可以在CNT上制备直径均匀的高度分散的Ni纳米颗粒,从而在复合材料上引起明显的氢溢出反应。在6.89 MPa和25℃下测得的平均直径为5 nm的镍修饰碳纳米管的最佳储氢量为1.02 wt%,几乎是原始碳纳米管(0.35 wt%)的三倍。

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