Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9577903 | Chemical Physics Letters | 2005 | 5 Pages |
Abstract
The N2 complexes of (ClHCl)â and (BrHBr)â are studied both experimentally using IR absorption spectroscopy and computationally. Two computational [MP2(full)/6-311++G(2d,2p)] geometries for the systems were found, and the cross-like structure is energetically the more stable for both of the systems. The BSSE-corrected interaction energies for the cross-like structures are â500 to â600 cmâ1. The matrix-isolation experiments support the formation of this complex structure, and the experimental complexation-induced shift is +4.8 and +7.1 cmâ1 for the (ClHCl)ââ¯N2 and (BrHBr)ââ¯N2 complexes, respectively. The HArCl and HKrBr molecules do not appear upon annealing of the photolyzed HCl/Ar and HBr/Kr matrices probably suggesting instability of these molecules.
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Authors
Antti Lignell, Leonid Khriachtchev, Hanna Mustalampi, Toni Nurminen, Markku Räsänen,