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- W2276411609 abstract "The heat capacity at constant pressure CP of 1D-chains of methane molecules adsorbed in the grooves on the outer surface of the bundles of closed single-walled nanotubes was measured in the temperature range from 2 to 60 K for the first time. The behavior of the temperature dependence of CP below 12 K indicates the presence of a Schottky-type anomaly originated from the tunneling between the lowest energy levels of the rotational spectra of the A, T, and E nuclear-spin species of methane molecules. The feature observed in the vicinity of 14 K is presumably caused by an orientational phase transition, in which the nature of the rotational motion of the molecules changes from libration to hindered rotation. It was found that the rotational heat capacity in the temperature range of 30–40 K is close to that of freely rotating methane molecules. An increase in the derivative dCP(T)/dT above 40 K and the feature in the CP(T) near 52 K are due to the decay of 1D chains of CH4." @default.
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- W2276411609 date "2016-02-01" @default.
- W2276411609 modified "2023-09-27" @default.
- W2276411609 title "Heat capacity of one-dimensional chains of methane molecules in the outer grooves of carbon nanotube bundles" @default.
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- W2276411609 doi "https://doi.org/10.1063/1.4942395" @default.
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