Experimental probes of the molecular hydrogen–carbon nanotube interaction
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چکیده
Electrical transport (resistance R and thermoelectric power S), Raman scattering, and hydrogen adsorption are used to study the interaction of hydrogen molecules with ropes of single-walled carbon nanotubes. The data are consistent with H2 physisorption under the experimental conditions investigated (4KoTo500K; 0.1 atmoPo20 atm). The response of S; R to 1 atm hydrogen at 500K is consistent with the introduction of a new scattering channel for electrons/holes in the metallic tubes. Raman scattering from the Q-branch of hydrogen molecules adsorbed on the surface is found shifted only by 1–2 cm 1 from their frequencies in the free molecule and indicates that two different adsorption sites can be detected. Finally, H2 wt% storage in heavily processed ropes of SWNTs are found to exceed 6% at B1 atm and T 1⁄4 77K and the isosteric heat of adsorption is found to be 120meV. r 2002 Elsevier Science B.V. All
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تاریخ انتشار 2002