Large tunneling frequencies of the symmetric tops NH3D+ and NHD+3 in crystalline fields of low symmetry
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.466998
Reference12 articles.
1. The librational ground state of monodeuteromethane adsorbed on the surface of graphite
2. The derivation of the rotational potential function from atom–atom potentials. I. Ammonium–chlorine compounds
3. The derivation of the rotational potential function from atom–atom potentials. II. Ammonium–fluorine compounds
4. The derivation of the rotational potential function from atom–atom potentials. IV. The symmetric tops NH3D+ and NHD+3 and the asymmetric top NH2D+2
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1. The tunneling frequencies of NH4+ and NH3D+ in NH4PF6;Chemical Physics Letters;2004-02
2. The tunneling frequencies of NH4+ and NH3D+ in (NH4)2PdCl6;Chemical Physics;2001-02
3. Rotational Tunneling and Neutron Spectroscopy: A Compilation;Chemical Reviews;1997-12-01
4. Tunnelling of the one-dimensional rotor NH3D+ in the NH4ClO4 and NH4PF6 lattices;Chemical Physics;1997-01
5. Hindered Rotation of the Ammonium Ion in the Solid State;Chemical Reviews;1994-09
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