High-pressure Raman study of methane hydrate "filled ice"

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Abstract

High-pressure Raman scattering measurements for the high-pressure phase III of methane hydrate (MH-III, filled ice structure) have been performed at pressures up to 25 GPa and at 296 K. We have observed the O-H stretching Raman signal in the MH-III phase by growing the MH-III crystals over several days at 1.9 GPa. The O-H stretching vibrational peak in the MH-III phase shows negative pressure dependence indicative of hydrogen bond and disappears above 14 GPa. The symmetrization pressure of hydrogen bond in the MH-III phase is estimated to be about 45 GPa from the pressure dependence of the O-H stretching Raman frequency, which is consistent with the previous theoretical prediction. © 2010 IOP Publishing Ltd.

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Ohtani, T., Ohno, Y., Sasaki, S., Kume, T., & Shimizu, H. (2010). High-pressure Raman study of methane hydrate “filled ice.” In Journal of Physics: Conference Series (Vol. 215). https://doi.org/10.1088/1742-6596/215/1/012058

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