Title : Internal rotation and spin conversion of CH3OH in solid para-hydrogen.

Pub. Date : 2006 Jan 20

PMID : 16424336






3 Functional Relationships(s)
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1 We found that a p-H2 matrix inhibits rotation of isolated methanol (CH3OH) but still allows internal rotation about the C-O bond, with splittings of the E/A torsional doublet in internal rotation-coupled vibrational modes that are qualitatively consistent with those for CH3OH in the gaseous phase. Methanol polyhomeotic homolog 2 Homo sapiens
2 We found that a p-H2 matrix inhibits rotation of isolated methanol (CH3OH) but still allows internal rotation about the C-O bond, with splittings of the E/A torsional doublet in internal rotation-coupled vibrational modes that are qualitatively consistent with those for CH3OH in the gaseous phase. Methanol polyhomeotic homolog 2 Homo sapiens
3 We found that a p-H2 matrix inhibits rotation of isolated methanol (CH3OH) but still allows internal rotation about the C-O bond, with splittings of the E/A torsional doublet in internal rotation-coupled vibrational modes that are qualitatively consistent with those for CH3OH in the gaseous phase. Methanol polyhomeotic homolog 2 Homo sapiens