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首页> 外文期刊>Journal of Materials Science >A microstructural and neutron-diffraction study on the interactions between microwave-irradiated multiwalled carbon nanotubes and hydrogen
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A microstructural and neutron-diffraction study on the interactions between microwave-irradiated multiwalled carbon nanotubes and hydrogen

机译:微波辐照的多壁碳纳米管与氢相互作用的微观结构和中子衍射研究

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摘要

Microwave irradiation is a simple yet effective way of altering the properties of multiwalled carbon nanotubes (MWNTs). This work studies the interactions between microwave-irradiated MWNTs and hydrogen. Effects of MWNT diameter and irradiation duration on the hydrogen-storage capacity have been investigated. We find that microwave irradiation induces damage to the MWNTs that can enhance hydrogen-storage capacity, with excessive damage being detrimental. Smaller-diameter tubes suffer less damage than larger tubes do. MWNTs with a diameter of 20-40 nm irradiated for 10 min had the highest hydrogen uptake of the samples measured, of 0.87 wt% at room temperature and under a hydrogen pressure of 3 MPa. Neutron powder-diffraction data revealed structural changes that were consistent with the insertion of hydrogen in the interstitial cavities of the microwave-irradiated MWNTs, as well as an expansion between the graphene layers of samples that were microwave irradiated. Hence, this simple treatment could be a promising solution to improve the hydrogen-storage capacities of MWNTs.
机译:微波辐射是改变多壁碳纳米管(MWNT)性能的一种简单而有效的方法。这项工作研究了微波辐射的多壁碳纳米管与氢之间的相互作用。研究了MWNT直径和辐照持续时间对储氢能力的影响。我们发现微波辐照引起对MWNTs的损害,其可以增强储氢能力,而过度损害是有害的。较小直径的管比较大的管受到的损害较小。直径为20-40 nm的MWNT辐照10分钟,在室温和3 MPa的氢气压力下,吸氢量最高,为0.87 wt%。中子粉末衍射数据显示出结构变化,该结构变化与在微波辐照的MWNTs的空隙中插入氢以及微波辐照样品的石墨烯层之间的膨胀相一致。因此,这种简单的处理方法可能是提高MWNT储氢能力的有前途的解决方案。

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