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Adsorption Of Hydrogen On Carbon Single-Walled Nanotubes As Measured By The Volumetric Technique

机译:通过体积技术测量的碳单壁纳米管上氢的吸附

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We report on hydrogen adsorption onto carbon single-walled nanotube (SWNT) material as measured by the volumetric technique. This method determines the amount adsorbed by monitoring the pressure in a known volume at a known temperature with a given number of moles of hydrogen introduced. The raw material for the samples is produced by pulsed laser vaporization of a graphite target containing Ni (0.6 at%) and Co (0.6 at%) dopants. This is followed with a purification procedure and then by a cutting procedure. Finally, the sample is degassed before the hydrogen adsorption is measured. The cutting procedure introduces a titanium alloy which participates in the overall hydrogen adsorption of the SWNT material. Importantly though, the amount of hydrogen adsorbed in the SWNT material cannot be explained by absorption from the alloy alone. A description of the apparatus that has allowed us to measure these samples is given and we discuss crucial experimental procedures needed to activate the SWNT samples for hydrogen adsorption.
机译:我们将氢吸附到通过体积技术测量的碳单壁纳米管(SWNT)材料上。该方法通过在已知温度下通过引入给定数量的氢气监测已知体积的已知体积中的压力来确定吸附的量。样品的原料是通过含有Ni(0.6at%)和Co(0.6at%)掺杂剂的石墨靶的脉冲激光蒸发来产生。随后用纯化程序,然后通过切割程序。最后,在测量氢吸附之前,样品脱气。切割程序引入了参与SWNT材料的整体氢吸附的钛合金。尽管如此,在SWNT材料中吸附的氢气不能通过单独吸收。给出了允许我们测量这些样品的装置的描述,并且我们讨论了激活SWNT样品的关键实验程序,用于氢吸附。

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