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Reversible hydrogen storage of multi-wall carbon nanotubes doped with atomically dispersed lithium

机译:掺杂原子分散锂的多壁碳纳米管的可逆储氢

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摘要

The doping of dispersed lithium (Li) onto multi-wall carbon nanotubes (CNTs) was performed by a solution method for hydrogen storage. The sample with a Li content of 1.2 wt% shows a maximal reversible hydrogen storage capacity of 3.9 wt% at 77 K and 106.66 kPa, which exceeds that of the un-doped CNTs by three times. According to the analyses of X-ray photoelectron spectroscopy, adsorption heat and nitrogen adsorption isotherms, the strong interaction between hydrogen molecules and the Li-doped CNTs, as well as the better charge isolation state of Li, may contribute to the improved hydrogen storage capacity. However, excessive Li may result in a lowering of the charge isolation state and a decrease in specific surface area and pore volume, and thus deteriorate the hydrogen storage capacity.
机译:通过用于储氢的溶液方法将分散的锂(Li)掺杂到多壁碳纳米管(CNT)上。 Li含量为1.2 wt%的样品在77 K和106.66 kPa时显示最大可逆储氢能力为3.9 wt%,是未掺杂CNT的三倍。根据X射线光电子能谱分析,吸附热和氮吸附等温线,氢分子与掺Li的碳纳米管之间的强相互作用以及良好的Li电荷隔离状态,可能有助于提高储氢能力。然而,过量的Li会导致电荷隔离状态的降低以及比表面积和孔体积的减小,从而使储氢能力劣化。

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